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Drive Technology \ Drive Automation \ System Integration \ Services Operating Instructions MOVITRAC ® LTP-B Edition 12/2010 16932811 / EN

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Page 1: MOVITRAC® LTP-B / Operating Instructions / 2010-12 · 2014. 8. 2. · 8 Operating Instructions – MOVITRAC® LTP-B 2 Preliminary information Safety Notes 2 Safety Notes MOVITRAC®

Drive Technology \ Drive Automation \ System Integration \ Services

Operating Instructions

MOVITRAC® LTP-B

Edition 12/2010 16932811 / EN

Page 2: MOVITRAC® LTP-B / Operating Instructions / 2010-12 · 2014. 8. 2. · 8 Operating Instructions – MOVITRAC® LTP-B 2 Preliminary information Safety Notes 2 Safety Notes MOVITRAC®

SEW-EURODRIVE—Driving the world

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Contents

Contents1 Important Notes................................................................................................... 5

1.1 About this documentation ........................................................................... 51.2 Structure of the safety notes ....................................................................... 51.3 Rights to claim under limited warranty ........................................................ 71.4 Exclusion of liability..................................................................................... 71.5 Copyright notice .......................................................................................... 71.6 Product names and trademarks.................................................................. 7

2 Safety Notes ........................................................................................................ 82.1 Preliminary information ............................................................................... 82.2 General ....................................................................................................... 82.3 Target group ............................................................................................... 92.4 Designated use ........................................................................................... 92.5 Transport................................................................................................... 102.6 Installation................................................................................................. 102.7 Electrical connection ................................................................................. 112.8 Safe disconnection.................................................................................... 112.9 Operation .................................................................................................. 122.10 Unit temperature ....................................................................................... 12

3 General specifications MOVITRAC® LTP-B .................................................... 133.1 Input voltage ranges ................................................................................. 133.2 Product designation .................................................................................. 133.3 Overload capability ................................................................................... 143.4 Protection features.................................................................................... 14

4 Installation ......................................................................................................... 154.1 Mechanical Installation.............................................................................. 154.2 Dimensions ............................................................................................... 154.3 IP20 housing: mounting and dimensions of switch cabinet ...................... 174.4 Electrical Installation ................................................................................. 19

5 Startup................................................................................................................ 315.1 User interface............................................................................................ 315.2 Easy startup for MOVITRAC® LTP-B........................................................ 33

6 Operation ........................................................................................................... 416.1 Drive status ............................................................................................... 41

7 Service and fault codes .................................................................................... 437.1 Troubleshooting ........................................................................................ 437.2 Fault history .............................................................................................. 437.3 Fault codes ............................................................................................... 447.4 SEW electronics service ........................................................................... 46

Operating Instructions – MOVITRAC® LTP-B

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Contents

8 Parameters......................................................................................................... 478.1 Overview of parameters............................................................................ 478.2 Explanation of the parameters .................................................................. 51

9 Software ............................................................................................................. 769.1 Modbus control ......................................................................................... 76

10 Technical Data MOVITRAC® LTP-B ................................................................. 7910.1 Conformance ............................................................................................ 7910.2 Environmental ........................................................................................... 7910.3 Output power and current ratings ............................................................. 80

11 Address List ...................................................................................................... 83

Index................................................................................................................... 93

Operating Instructions – M

OVITRAC® LTP-B
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1About this documentationImportant Notes

1 Important Notes1.1 About this documentation

The documentation is part of the product and contains important information aboutinstallation, startup, operation and service. The documentation is written for everyoneinstalling, starting up or servicing this product.

The documentation must be accessible and legible. Make sure that persons responsiblefor the system and its operation, as well as persons who work independently on the unit,have read through the documentation carefully and understood it. If you are unclearabout any of the information in this documentation, or if you require further information,contact SEW-EURODRIVE.

1.2 Structure of the safety notesUnless the information in the documentation is adhered to, it will be impossible toensure:

• Trouble-free operation

• Fulfillment of any rights to claim under guarantee

Consequently, read the operating instructions before you start working with theunit!The operating instructions contain important information about servicing. Therefore,keep the operating instructions close to the unit.

1.2.1 Meaning of the signal wordsThe following table shows the grading and meaning of the signal words for safety notes,notes on potential risks of damage to property, and other notes.

Signal Word Meaning Consequences if disregarded

DANGER Imminent danger Severe or fatalinjuries

WARNING Possible dangerous situation Severe or fatalinjuries

CAUTION Possible dangerous situation Minor injuries

NOTICE Possible damage to property Damage to the drive system or its environ-ment

INFORMATION Useful information or tip: Simplifies the handling of the drive system.

Operating Instructions – MOVITRAC® LTP-B

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1 tructure of the safety notesportant Notes

1.2.2 Structure of the section safety notes

The section safety notes do not apply to a specific action, but to several actions pertain-ing to one subject. The pictograms used indicate either a general or a specific hazard.

This is the formal structure of a section safety note:

This is an example of a section safety note:

1.2.3 Structure of the embedded safety notesThe embedded safety notes are directly integrated in the instructions just before thedescription of the dangerous action.

This is the formal structure of an embedded safety note:

• SIGNAL WORD Nature and source of hazard.

Possible consequence(s) if disregarded.

– Measure(s) to prevent the hazard.

This is an example of an embedded safety note:

• DANGER Risk of crushing if the drive restarts unintentionally.

Severe or fatal injuries.

– De-energize the drive.

– Secure the drive against unintended restart.

SIGNAL WORDNature and source of hazard.

Possible consequence(s) if disregarded.• Measure(s) to prevent the hazard.

WARNINGFalling of suspended loads.

Severe or fatal injuries.• Do not stand under the suspended load.• Secure the danger zone.

SIm

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1Rights to claim under limited warrantyImportant Notes

1.3 Rights to claim under limited warrantyA requirement of fault-free operation and fulfillment of any rights to claim under limitedwarranty is that you adhere to the information in the MOVITRAC® LTP-B documenta-tion. Therefore, read the operating instructions before you start working with the unit.

Make sure that the documentation is available to persons responsible for the system andits operation as well as to persons who work independently on the unit. You must alsoensure that the documentation is legible.

1.4 Exclusion of liabilityYou must comply with the information contained in this documentation to ensure safeoperation and to achieve the specified product characteristics and performance require-ments.

SEW-EURODRIVE assumes no liability for injury to persons or damage to equipment orproperty resulting from non-observance of the documentation. In such cases, any liabil-ity for defects is excluded.

1.5 Copyright notice© 2010 – SEW-EURODRIVE. All rights reserved.

Copyright law prohibits the unauthorized duplication, modification, distribution, and useof this document, in whole or in part.

1.6 Product names and trademarksThe brands and product names contained within this publication are trademarks orregistered trademarks of the titleholders.

Operating Instructions – MOVITRAC® LTP-B

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2 reliminary informationafety Notes

2 Safety NotesMOVITRAC® LTP-B drive inverters may not perform safety functions without higher-level safety systems.

Do not use MOVITRAC® LTP-B drive inverters for any safety functions in conjunctionwith hoist applications.

2.1 Preliminary informationThe following safety notes predominantly refer to the use of frequency inverters. Addi-tionally, when using drives with motors or gearmotors, observe the corresponding safetynotes in the respective operating instructions.

Please also observe the supplementary safety notes in the individual sections of thispublication.

2.2 GeneralDuring operation, frequency inverters can have live, bare parts according to their degreeof protection.

Severe or fatal injuries.

• All work related to transportation, storage, setup / mounting, connection, startup,maintenance and repair may only be carried out by qualified personnel, in strictobservance of:

– The relevant detailed operating instructions

– The warning and safety signs on the motor / gearmotor

– All other project planning documents, operating instructions and wiring diagramsrelated to the drive

– The specific regulations and requirements for the system

– The national/regional regulations governing safety and the prevention of acci-dents

• Never install damaged products.

• Immediately report any damages to the shipping company.

Removing covers without authorization, improper use as well as incorrect installation oroperation may result in severe injuries to persons or damage to property.

This document includes further information.

PS

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2Target groupSafety Notes

2.3 Target groupAny mechanical work may only be performed by adequately qualified personnel. Quali-fied personnel in this context are persons who are familiar with the setup, mechanicalinstallation, trouble shooting and maintenance of this product. Further, they are qualifiedas follows:

• Training in mechanical engineering, e.g. as a mechanic or mechatronics technician(final examinations must have been passed).

• They are familiar with these operating instructions.

Any electronic work may only be performed by adequately qualified electricians. Quali-fied electricians in this context are persons who are familiar with the electronic installa-tion, startup, trouble shooting and maintenance of this product. Further, they are quali-fied as follows:

• Training in electrical engineering, e.g. as an electrician or mechatronics technician(final examinations must have been passed).

• They are familiar with these operating instructions.

All work in further areas of transportation, storage, operation and waste disposal mayonly be carried out by persons who have been trained appropriately.

2.4 Designated useFrequency inverters are components for controlling asynchronous AC motors.Frequency inverters are components intended for installation in electrical systems ormachines. Never connect capacitive loads. Operation with capacitive loads results inover voltages and may destroy the unit.

The following standards apply, if the frequency inverters are marketed in the EU / EFTA:

• In case of installation in machines, startup of the drive inverters (meaning the start ofproper use) is prohibited until it is determined that the machine meets the require-ments stipulated in the EC Directive 2006/42/EC (machine directive); observeEN 60204.

• Startup (i.e. the start of designated use) is only permitted under observance of theEMC (2004/108/EC) directive.

• The frequency inverters comply with the requirements of the Low Voltage Directive2006/95/EC. The harmonized standards of the EN 61800-5-1 / DIN VDE T105 seriesin connection with EN 60439-1/VDE 0660 part 500 and EN 60146 / VDE 0558 areapplied to these frequency inverters.

Observe the technical data and the connection requirements specified on the nameplateand the operating instructions.

2.4.1 Safety functionsFrequency inverters from SEW-EURODRIVE must not perform any safety functionsunless the inverters are subordinate to other safety systems.

Use higher-level safety systems to ensure protection of equipment and personnel.

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2 ransportafety Notes

2.4.2 Content of this publication

This publication contains conditions and amendments related to MOVITRAC® LTP-B insafety-oriented applications.

The system comprises a frequency inverter with asynchronous motor and safety-testedexternal disconnecting device.

2.5 TransportImmediately upon receipt, inspect the shipment for any damage that may have occurredduring transportation. Inform the shipping company immediately in the event of damage.It may be necessary to preclude startup.

2.6 Installation• Never install or start up damaged products. Please submit a complaint to the trans-

port company immediately in the event of damage.

• Installation, startup and service work on the unit may only be undertaken by trainedpersonnel. The personnel must be trained in the relevant aspects of accident preven-tion and must comply with the regulations in force (e.g. EN 60204, VBG 4,DIN-VDE 0100/0113/0160).

• Follow the specific instructions during installation and startup of the motor and thebrake.

• Ensure that preventive measures and protection devices correspond to the applica-ble regulations (e.g. EN 60204 or EN 50178).

Grounding the unit is a necessary protective measure.

Overcurrent protection devices are a necessary protective measure.

• The unit meets all requirements for reliable isolation of power and electronicsconnections in accordance with UL508. All connected circuits must also satisfy therequirements for reliable isolation in order to guarantee reliable isolation.

• Take suitable measures to ensure that the connected motor does not start upautomatically when the inverter is switched on. To do this, you can connect binaryinputs DI01 through DI05 to GND.

• Integral output stage solid state short circuit protection does not provide branch cir-cuit protection. Branch circuit protection must be provided in accordance with the Na-tional Electrical Code and any additional local codes.

TS

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2Electrical connectionSafety Notes

2.6.1 Application environment

The following applications are forbidden unless measures are expressly taken to makethem possible:

• Use in explosion-proof areas.

• Use in environments with harmful substances:

– Oils

– Acids

– Gases

– Vapors

– Dust

– Radiated interference

– Other harmful environments

• Use subject to mechanical vibration and shock loads in excess of the requirementsin EN 50178.

• If the inverter performs safety functions, which have to guarantee the protection ofmachinery and people.

2.7 Electrical connectionObserve the applicable national accident prevention guidelines when working on livefrequency inverters (e.g. BGV A3 for Germany).

During installation, observe the specifications regarding cable cross sections, fusing andprotective conductor connection. This publication contains additional information.

In this documentation, you will find notes on EMC compliant installation, such as shield-ing, grounding, arrangement of filters and routing of lines. The manufacturer of the sys-tem or machine is responsible for maintaining the limits established by EMC legislation.

Protective measures and protection devices must comply with the regulations in force(e.g. EN 60204 or EN 61800-5-1).

Ground the unit.

2.8 Safe disconnectionThe unit meets all requirements for safe disconnection of power and electronic connec-tions in accordance with EN 61800-5-1. All connected circuits must also satisfy therequirements for safe disconnection.

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2 perationafety Notes

2.9 Operation• Danger of electrical shock resulting in severe or fatal injuries. High voltages are pres-

ent in the terminals and within the drive for up to 10 minutes after the electrical supplyhas been disconnected.

– Disconnect and isolate the MOVITRAC® LTP-B from the electrical supply at least10 minutes before commencing any work on it.

• Dangerous voltages are present in the output terminals and the cables and motorterminals connected to them when the unit is switched on. Dangerous voltages mayalso be present when the unit is inhibited and the motor at a standstill.

• The unit is not necessarily deenergized when the LEDs and the 7-segment displayare off.

• Safety functions inside the unit or a mechanical blockage may cause the motor tostop. The removal of the source of the malfunction or a reset can result in an auto-matic restart of the drive. If, for safety reasons, this is not permissible for the drivenmachine, disconnect the unit from the supply system before correcting the fault.

2.10 Unit temperatureMOVITRAC® LTP-B frequency inverters are usually operated with braking resistors.The braking resistors can also be installed in the housing of the units.

The braking resistors can reach a surface temperature of 70 °C to 250 °C.

Never touch the housing of the MOVITRAC® LTP-B units or the braking resistors duringoperation or in the cool down phase once the unit has been switched off.

OS

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3Input voltage rangesGeneral specifications MOVITRAC® LTP-B

3 General specifications MOVITRAC® LTP-B3.1 Input voltage ranges

Depending on model and power rating the drives are designed for direct connection tothe following supplies:

MOVITRAC® LTP-B size 2 (200 – 240 V):200 V – 240 V ± 10 %, 1-phase*, 50 – 60 Hz ± 5 %

MOVITRAC® LTP-B all sizes (200 – 240 V):200 V – 240 V ± 10 %, 3-phase, 50 – 60 Hz ± 5 %

MOVITRAC® LTP-B all sizes (380 – 480 V):380 V – 480 V ± 10 %, 3-phase, 50 – 60 Hz ± 5 %

• INFORMATION* It is also possible to connect 1-phase MOVITRAC® LTP-B units to 2-phases of a200 – 240 V, 3-phase mains.

Products used with a 3-phase supply are designed for a maximum supply imbalance of3 % between phases. For input supplies which have a supply imbalance greater than3 % (typically the Indian subcontinent and parts of the Asia Pacific including China)SEW-EURODRIVE recommends the use of input chokes.

3.2 Product designation

MC LTP B 0015 2 0 1 1 00 (60 Hz)

60Hz American version only

Type

00 = Standard IP20 housing10 = IP55 / NEMA 12 housing20 = IP55 / NEMA 12 housing with switch40 = IP66 / NEMA 4X housing with switch

Quadrants 4 = 4Q (with brake chopper)

Connection type1 = 1-phase3 = 3-phase

Interference suppression on the supply side

0 = class 0A = class C2B = class C1

Mains voltage2 = 200 – 240 V5 = 380 – 480 V

Recommended motor power 0015 = 1.5 kW

Version B

Product type MC LTP

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3 verload capabilityeneral specifications MOVITRAC® LTP-B

3.3 Overload capability

For motor overload adjustment see parameter P1-08 in chapter "Parameter Group 1:Basic parameters (Level 1)" (page ).

3.4 Protection features• Output short-circuit, phase-to-phase, phase-to-ground

• Output over-current

• Overload protection

• Drive delivers 150 % of rated motor current for 60 seconds. See Chapter"Overload capability" (page 14).

• Over-voltage trip

• Set at 123 % of drive maximum rated supply voltage.

• Under-voltage trip

• Over-temperature trip

• Under-temperature trip

• Drive will trip if enabled below –10 °C

• Supply phase loss

• A running drive will trip if 1 phase of a 3-phase supply is lost for more than15 seconds.

Overload capability 60 seconds 2 seconds

Default setting 150 % 175 %

CMP 200 % 250 %1)

1) Only 200 % for size 3, 5.5 kW

Sync 250 200 % 250 %

MGFA2 / MGFA4 300 % 300 %

OG

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4Mechanical InstallationInstallation

4 Installation4.1 Mechanical Installation

• Inspect the MOVITRAC® LTP-B carefully prior to installation to ensure it is undam-aged.

• Store the MOVITRAC® LTP-B in its box until required. The storage location shouldbe clean and dry and within the ambient temperature range of –40 °C to +60 °C.

• Install the MOVITRAC® LTP-B on a flat, vertical, flame-resistant, vibration-freesurface, within a suitable switch cabinet. This should be according to EN 60529 ifspecific Ingress Protection (IP) ratings are required.

• Do not place flammable material close to the drive.

• Prevent the entry of conductive or flammable foreign bodies.

• The maximum ambient operating temperature is 50 °C for IP20 and 40 °C for IP55 /IP66 drives. The minimum ambient operating temperature is –10 °C.

Please observe the specific ratings employed in chapter "Environmental" (page 79).

• Relative humidity must be less than 95 % (non-condensing).

• MOVITRAC® LTP-B units can be installed side by side. This gives adequate ventila-tion space between them. If the MOVITRAC® LTP-B is to be installed above anotherdrive or any other heat-producing device, the minimum vertical spacing is 150 mm.The switch cabinet should either be force-ventilated or large enough to allow naturalcooling, see chapter "IP20 housing: mounting and dimensions of switch cabinet"(page 17).

• A DIN rail mounting is supported in size 2 (IP20) drives only.

4.2 DimensionsMOVITRAC® LTP-B is available in 3 housing versions:

• Standard IP20 housing for use in switch cabinets

• IP55 / NEMA 12 K

• IP66 / NEMA 4X

The IP55 / NEMA 12 K and IP66 / NEMA 4X housing is protected against moisture anddust. Therefore, the drives can be operated indoors under harsh conditions. Electroni-cally, the drives are identical and the only differences are the dimensions of the housingand the weight.

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4 imensionsstallation

4.2.1 Dimensions of the IP20 housing

3032470411 3032469899 3033530123

Dimension Size 2 Size 3

A (Height) mm 220 261

in 8.66 10.28

B (Width) mm 105 126

in 4.10 4.96

C (Depth) mm 185 205

in 7.28 8.07

Weight kg 2.0 4.5

lb 4.40 10.0

a mm 63.0 80.0

in 2.48 3.15

b mm 209.0 247

in 8.23 9.72

c mm 23 25.5

in 0.91 1.02

d mm 5.25 7.25

in 0.21 0.29

Power terminal torque settings

Nm 1.0 1.0

lb.in 8.85 8.85

Recommended screw size 4 × M4 4 × M4

A

B

C

ac c

d

b

d

DIn

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4IP20 housing: mounting and dimensions of switch cabinetInstallation

4.3 IP20 housing: mounting and dimensions of switch cabinetFor applications that require a higher IP rating than the IP20 offered by the standardhousing, the drive must be mounted in a switch cabinet. The following guidelines shouldbe observed for these applications:

• The switch cabinet should be made from a thermally conductive material, unlessforced ventilation is used.

• When a vented switch cabinet is used, there should be venting above and below thedrive to ensure good air circulation. Air should be drawn in below the drive andexpelled above the drive.

• If the external environment contains contamination particles (e.g. dust), a suitableparticle filter should be fitted to the vents and forced ventilation implemented. Thefilter must be serviced and cleaned as and when necessary.

• Environments with a high moisture, salt or chemical content should use a suitablysealed (non-vented) switch cabinet.

4.3.1 Dimensions of non-vented metal switch cabinet

Drive power rating

Sealed switch cabinet

A B C D

mm in mm in mm in mm in

Size 2 0.75 kW, 1.5 kW 230 V0.75 kW, 1.5 kW, 2.2 kW 400 V

400 15.75 300 11.81 350 11.81 60 2.36

Size 2 2.2 kW 230 V4.0 kW 400 V

600 23.62 450 17.72 350 11.81 100 3.94

3080168459

A

D

D

C B

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4 20 housing: mounting and dimensions of switch cabinetstallation

4.3.2 Dimensions of vented switch cabinet

4.3.3 Dimensions of force vented switch cabinet

Drive power rating

Vented switch cabinet

A B C D

mm in mm in mm in mm in

Size 2 All ratings 600 23.62 400 15.75 300 11.81 100 3.94

Size 3 All ratings 800 31.5 600 23.62 350 13.78 150 5.91

Size 4 All ratings 1000 39.37 600 23.62 300 11.81 250 9.84

Size 5 All ratings 1000 – – – – – – –

Size 6 All ratings 1000 – – – – – – –

Size 7 All ratings 1000 – – – – – – –

Drive power rating

Force vented switch cabinet (with fan)

A B C D

Air Flowmm in mm in mm in mm in

Size 2 All ratings 400 15.75 300 11.81 250 9.84 100 3.94 > 45 m3/h

Size 3 All ratings 600 23.62 400 15.75 250 9.84 150 5.91 > 80 m3/h

Size 4 All ratings 880 34.65 500 19.69 300 11.81 200 7.87 > 300 m3/h

Size 5 All ratings 1100 43.31 600 23.62 400 15.75 250 9.84 > 900 m3/h

Size 6 / 7 All ratings 1900 74.80 600 23.62 500 19.69 300 11.81 > 1000 m3/h

IPIn

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4Electrical InstallationInstallation

4.4 Electrical InstallationIt is essential to comply with the safety instructions in chapter 2 during installa-tion.

• MOVITRAC® LTP-B units should only be installed by qualified electricians and inaccordance with local and national regulations and codes of practice.

• The MOVITRAC® LTP-B has an Ingress Protection rating of IP20. For higher IPratings, use a suitable enclosure or the IP55 / NEMA 12 or IP66 / NEMA 4X version.

• Where the electrical supply to the drive is through a plug and socket connector, donot disconnect it until 10 minutes have elapsed after turning off the supply.

• Ensure correct earthing connections. See diagram in chapter "Drive and motorconnection" (page 24).

• The earth cable must be sufficient to carry the maximum supply fault current, whichis normally limited by the fuses or motor circuit breaker.

WARNINGDanger of electrical shock. High voltages are present in the terminals and within thedrive for up to 10 minutes after the electrical supply has been disconnected.

Severe or fatal injuries.• Disconnect and isolate the MOVITRAC® LTP-B from the electrical supply at least

10 minutes before commencing any work on it.

WARNINGRisk of fatal injury if the hoist falls.

Severe or fatal injuries.• MOVITRAC® LTP-B is not designed for use as a safety device in hoist applications.

Use monitoring systems or mechanical protection devices to ensure safety.

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4 lectrical Installationstallation

4.4.1 Prior to installation

• Ensure that the supply voltage, frequency and number of phases (single or 3-phase)correspond to the rating of the MOVITRAC® LTP-B as delivered.

• An isolator or similar should be installed between the power supply and the drive.

• Never connect the mains power supply to the MOVITRAC® LTP-B output terminalsU, V or W.

• The cables are only protected when slow blow HRC fuses or a motor circuit breaker(MCB) are used. See chapter "Permitted voltage supply systems" for further informa-tion (page 20).

• Do not install any type of automatic switchgear between the drive and the motor.Wherever control cabling is close to power cabling, maintain a minimum separationof 100 mm and arrange crossings at 90 °.

• Ensure that screening or armoring of power cables is effected in accordance with theconnection diagram in chapter "Drive and motor connection" (page 24).

• Ensure that all terminals are tightened to the appropriate torque.

• It is recommended that the power cabling should be 4-core, PVC-insulated, screenedcable, laid in accordance with local industrial regulations and codes of practice.Conductor end sleeves are required to connect the power cables to the drive.

• The ground terminal of each MOVITRAC® LTP-B should be individually connecteddirectly to the site earth (ground) busbar (through the filter if installed).

MOVITRAC® LTP-B ground connections should not loop from one drive to anotheror to / from any other equipment. Ground loop impedance must conform to localindustrial safety regulations.

To meet UL regulations, UL approved ring crimp terminals should be used for allearth wiring connections.

Helpcard In the IP20 the helpcard is located in a seperate slot above the display.

Permitted voltage supply systems

• Voltage supply systems with grounded star pointMOVITRAC® LTP-B is intended for operation on TN and TT systems with directlygrounded star point.

• Voltage supply systems with non-grounded star pointOperation on mains systems with a non-grounded star point (for example IT powersystems) is also permitted. SEW-EURODRIVE recommends using an earth-leakagemonitor for this according to the PCM (Pulse Code Measuring) principle. Using suchdevices prevents the earth-leakage monitor from mis-tripping due to the earthcapacitance of the drive.

• External conductor grounded voltage supply systemsOnly operate the inverters on supply systems with a maximum phase-to-earth volt-age of AC 300 V.

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4Electrical InstallationInstallation

Mains contactors • Only use input contactors of utilization category AC-3 (EN 60947-4-1).

• Ensure a minimum delay of 120 seconds between 2 mains activations.

Input fuses Fusing types:

• Line protection types in operation classes gL. gG:

– Rated fusing voltage ≥ rated mains voltage

– Rated fusing current must be designed for 100 % of the rated inverter currentdepending on the inverter utilization.

• Line protection switch with characteristics B, C:

– Circuit breaker rated voltage ≥ rated mains voltage

– Rated line protection switch currents must be 10 % above the rated invertercurrent.

Operation on IT systems

SEW-EURODRIVE recommends using earth-leakage monitors with a pulse code mea-suring process in voltage supply systems with a non-earthed star point (IT systems).Use of such devices prevents the earth-leakage monitor mis-tripping due to the earthcapacitance of the drive.

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4 lectrical Installationstallation

Braking resistor connection

• Shorten the cables to the required length.

• Use 2 tightly twisted leads or a 2-core shielded power cable. Cross-section accordingto the rated output of the drive.

• Protect the braking resistor with a bimetallic relay with trip class 10 or 10 A (wiringdiagram).

• For braking resistors in the BW..-T series, you can connect the integrated thermostatusing a 2-core, shielded cable as an alternative to a bimetallic relay.

• The flat-design braking resistors have internal thermal overload protection (fuse can-not be replaced). Install the flat-design braking resistors together with the appropriatetouch guard.

Installing the braking resistor

• WARNING Risk of electrical shock. The supply cables to the braking resistorscarry a high voltage (approx. DC 900 V) during rated operation.

Severe or fatal injuries.

– Disconnect and isolate the MOVITRAC® LTP-B from the electrical supply at least10 minutes before removing the supply cable.

• CAUTION Risk of burns. The surfaces of the braking resistors become very hotwhen they are loaded with Prated.

Minor injuries.

– Choose a suitable installation location.

– Do not touch the braking resistors.

– Install an appropriate touch guard.

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4Electrical InstallationInstallation

4.4.2 InstallationMotor terminal box connections

Motors are connected in either Star, Delta, Double Star or Star Nema motors. The motorrating plate will indicate the voltage rating for the method of connection, which mustmatch the operating voltage of the MOVITRAC® LTP-B unit.

R13

R76

DT / DV

Low voltage ∆ High voltage

Low voltage High voltage

Low voltage High voltage

W2 U2

U1

U

V1 W1

V2

V W

W2 U2

U1

U

V1 W1

V2

V W

U3 V3

U1

L1

V1 W1

T1 T2 T3

W3

T9 T7 T8

W2 U2 V2

T6 T4 T5

L2 L1

T9 T7

U1

L1

V1 W1

T1 T2 T3

T8

T6 T4 T5

W3 U3 V3

W2 U2 V2

L2 L1

U3 V3

U1

U

V1 W1

T7 T8 T9

T1 T2 T3

W3

V W

T4 T5 T6U2 V2 W2

T4 T5 T6

T7 T8 T9

T1 T2 T3

U2 V2 W2

U3 V3

U1

U

V1 W1

W3

V W

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24

4 lectrical Installationstallation

Drive and motor connection

• WARNING Risk of electrical shock. Risk of exposure to high voltage may occur ifthe unit is wired incorrectly.

Severe or fatal injuries.

– It is essential to observe the connection sequence illustrated below.

3003098763

[1] Mains supply contactor to drive

[2] Mains supply to brake rectifier, switched simultaneously by K10

[3] Control contactor / relay, energized via the relay contact [4] inside the drive and supplies the brake rectifier

[4] Potential free relay contact inside the drive

[V+] External power supply for energizing the control contactor / relay

BW

F14/F15F14/F15

L1 L2 L3

L1' L2' L3'

F11/F12/F13

K10(AC-3)

L1L2/N

PE

L1 L2 L3

U V W

12345

12345

K12(AC-3)

K12(AC-3)

GNDGND

GND

BGBGE

BGBGE

F14/F15

K11(AC-3)

K11(AC-3)

K11(AC-3)

1234

131415

BMK

BMV

V (BMK)AC

V (BMV)DC

VAC VAC

*M

3-phase

Option ND.. input choke

Cut-off in the AC circuit

DT/DV/D: DT/DV/D:Cut-off in the DCand AC circuits

white

red

blue

white

red

blue

Power section

17

18

+V

[V+] +V

17

18

17

18

redwhiteblue

BR

BW.. / BW..-T braking resistor

Option IP55 / IP66 with switch only(MC LT xxx –20 / -40)

DC Bus “–” access

not 1-ph. 230 V

connection /DC Bus “+” access

+

[1]

[2]

[4]

[3]

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4Electrical InstallationInstallation

• INFORMATION• Connect the brake rectifier using a separate supply system lead.

• Supply via the motor voltage is not permitted!

Always switch the brake off on the DC and AC sides for:

• All hoist applications

• Drives that require a rapid brake response time

Motor thermal pro-tection (TF / TH)

Motors with an internal over-temperature sensor (TF, TH or similar) can be connecteddirectly to the MOVITRAC® LTP-B. A trip will then be displayed on the drive.

The sensor is connected to terminal 1 (+24 V) and digital input 3. Parameter P1-15 mustbe set to external trip input to receive over-temperature trips. The trip level should be setto 2.5 kΩ. See Chapter "P1-15 Digital inputs function select" (page 71) and ParameterP2-33 for information on the motor thermistor.

Multi motor / group drive (for induction motors only)

The total of the motor currents must not exceed the rated current of the drive. See chap-ter "Technical Data" (page 79).

The motor group is limited to 5 drives and the motors in a group must not be more than3 sizes apart.

The maximum cable length for the group is limited to the values for the individual drives.See chapter "Technical Data" (page 79).

For groups with more than 3 drives SEW-EURODRIVE recommends using an outputchoke.

Connecting AC brakemotors

For detailed information about the SEW brake system, refer to the "Gearmotors" cata-log, which you can order from SEW-EURODRIVE.

SEW brake systems are disk brakes with a DC coil that release electrically and brakeusing spring force. A brake rectifier supplies the brake with DC voltage.

INFORMATIONThe brake rectifier must have a separate supply system cable for inverter operation; itmust not be powered using the motor voltage!

Always activate the brake via binary Relay output 2": do not use the PLC

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4 lectrical Installationstallation

4.4.3 Signal terminals overviewMain terminals

The signal terminal block has the following signal connections:

All digital inputs activated by input voltage in range 8 – 30 V, i.e. +24 V compatible.

• NOTICE Possible damage to property.

Voltages greater than 30 V applied to the signal terminals may result in damage tothe controller.

– Only apply voltages up to 30 V to the signal terminals.

• INFORMATION Terminals 7 and 9 can be used for GND reference if MOVITRAC® LTP-B is controlledvia SPS / PLC. Connect ±PSE to +24 V and GND to enable power stage, otherwisethe drive display shows "Inhibt".

IP20 and IP55 IP55 and IP66 with switch option

3003175179 3003280395

+24

V

DI 1

DI 2

DI 3

+10

VA

I 1 /

DI 4

0 V

AO

1 /

DO

1

0 V

AO

2 /

DO

2

PS

E+

PS

E–

AI 2

/ D

I 5

1 2 3 4 5 6 7 8 9 10 11 12 13

+24

V

DI 1

DI 2

DI 3

1 2 3 4 5 6 7 8 9 10 11 12 13

FWD

REV

+10

VA

I 1 /

DI 4

0 V

AO

1 /

DO

1

0 V

AO

2 /

DO

2

PS

E+

PS

E–

AI 2

/ D

I 5

Terminal no.

Signal Connection Description

1 +24 V +24 V ref out Ref. to activate DI1 – DI3 (100 mA max.)

2 DI 1 Digital input 1 Positive logic"Logic 1" input voltage range: DC 8 – 30 V"Logic 0" input voltage range: DC 0 – 2 VCompatible with PLC requirement when 0 V is connected to terminal 7 or 9.

3 DI 2 Digital input 2

4 DI 3 Digital input 3 / thermistor contact

5 +10 V +10 V ref out 10 V ref for analog input (pot supply +, 10 mA max., 1 kΩ min.)

6 AI 1 / DI 4 Analog input (12 bit)Digital input 4

0 – 10 V, 0 – 20 mA, 4 – 20 mA"Logic 1" input voltage range: DC 8 – 30 V

7 0 V 0 V common 0 V ref (pot supply –)

8 AO 1 / DO 1 Analog output (10 bit)Digital output 1

0 – 10 V, 20 mA analog24 V, 20 mA digital

9 0 V 0 V common 0 V ref

10 AI 2 / DI 5 Analog input 2 (12 bit)Digital input 5

0 – 10 V, 0 – 20 mA, 4 – 20 mA"Logic 1" input voltage range: DC 8 – 30 V

11 AO 2 / DO 2 Analog output 2 (10 bit)Digital output 2

0 – 10 V, 20 mA analog24 V, 20 mA digital

12 PSE+ Power stage enable +24 V must be connected to PSE+

13 PSE– GND must be connected to PSE–

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4Electrical InstallationInstallation

Relay terminal overview

4.4.4 RJ45 Communication Socket

3003612555

Terminal no.

Signal Description

14 Relay output 1 common Relay contact (AC 250 V / DC 30 V @ 5 A)

15 Relay output 1 NO

16 Relay output 1 NC

17 Relay output 2 common

18 Relay output 2 NO

Rel

ay o

utpu

t 1co

mm

on

Rel

ay o

utpu

t 2co

mm

on

Rel

ay o

utpu

t 1 N

O

Rel

ay o

utpu

t 2 N

O

Rel

ay o

utpu

t 1 N

C

14 15 16 17 18

2933413771

[1] RS485+ (Modbus)

[2] RS485– (Modbus)

[3] +24 V

[4] RS485+ (Engineering)

[5] RS485– (Engineering)

[6] 0 V

[7] SBus+ (P1-12 must be set for SBus communication)

[8] SBus– (P1-12 must be set for SBus communication)

[4]

[5]

[6]

[7]

[8]

[3]

[2]

[1]

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4 lectrical Installationstallation

4.4.5 UL-compliant installation

Note the following for UL-compliant installation:

• The drives can be operated within the following ambient temperatures:

• Only use copper connection cables which can withstand ambient temperatures of upto 75 °C.

• Permitted tightening torques for MOVITRAC® LTP-B power terminals are:

MOVITRAC® LTP-B drive inverters are suitable for operation in voltage power systemswith an earthed star point (TN and TT systems), which can supply a maximum supplycurrent and a maximum supply voltage in accordance with the following tables. Thefuses listed in the following tables are the maximum permitted fuses for each inverter.Only use melting fuses.

Only use tested units with a limited output voltage (Vmax = DC 30 V) and limited outputcurrent (I ≤ 8 A) as an external DC 24 V source.

UL certification does not apply to operation in voltage supply systems with a non-earthedstar point (IT systems).

200 – 240 V Units

IP-rating Ambient temperature

IP20 –10 °C to 50 °C

IP55 / NEMA 12 –10 °C to 40 °C

IP66 / NEMA 4X –10 °C to 40 °C

Size Tightening torque

2 & 3 1 Nm / 8.9 lb.in

4 4 Nm / 35.4 lb.in

5, 6 & 7 8 Nm / 70 lb.in

MOVITRAC® LTP... Max. supply short circuitcur-rent

Max. supply voltage Max. fuse rating

0004 AC 5000 A AC 240 V AC 15 A / 250 V

0008 AC 5000 A AC 240 V AC 30A / 250 V

0015 AC 5000 A AC 240 V AC 20A / 250 V

0022, 0040 AC 5000 A AC 240 V AC 30 A / 250 V

0055, 0075 AC 5000 A AC 240 V AC 110 A / 250 V

0110 AC 5000 A AC 240 V AC 175 A / 250 V

0150 AC 5000 A AC 240 V AC 225 A / 250 V

0220 AC 10000 A AC 240 V AC 350 A / 250 V

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4Electrical InstallationInstallation

380 – 480 V Units

4.4.6 Electromagnetic compatibilityThe MOVITRAC® LTP-B range of frequency inverters is designed for use in machinesand drive systems. They comply with the EMC product standard EN 61800-3 forvariable speed drives. For EMC compliant installation of the drive system, follow theguidelines set out in council directive 2004/108/EC (EMC).

EMC immunity The MOVITRAC® LTP-B range meets the immunity levels defined in EN 61800-3 forboth industrial and domestic (light industrial) environments.

EMC emissions The MOVITRAC® LTP-B EMC emission levels comply with the limit classificationsdefined in EN 61800-3 and EN 55014, allowing it to be used in both industrial anddomestic (light industrial) applications.

To obtain the best EMC performance the drives should be installed in accordance withthe wiring guidelines in chapter "Installation", thereby ensuring good earth connectionsfor the drive system. Screened motor cable must be used to achieve compliance withthe radiated emissions levels.

The following table defines the conditions for the use of MOVITRAC® LTP-B in driveapplications:

MOVITRAC® LTP... Max. supply short circuitcur-rent

Max. supply voltage Max. fuse rating

0008, 0015 AC 5000 A AC 480 V AC 15 A / 600 V

0022, 0040 AC 5000 A AC 480 V AC 20 A / 600 V

0055, 0075 AC 5000 A AC 480 V AC 60 A / 600 V

0110 AC 5000 A AC 480 V AC 110 A / 600 V

0150 / 0220 AC 5000 A AC 500 V AC 175 A / 600 V

0300 AC 5000 A AC 500 V AC 225 A / 600 V

0370, 0450 AC 10000 A AC 500 V AC 350 A / 600 V

0550, 0750 AC 10000 A AC 500 V AC 500 A / 600 V

Drive type / rating Cat C1 (class B) Cat C2 (class A) Cat C3

230 V, 1-phase ratingsLTP-B xxxx 2B1-x-xx

No additional filtering requiredUse screened motor cable

230 V / 400 V, 3-phase ratingsLTP-B xxxx 2A3-x-xxLTP-B xxxx 5A3-x-xx

Use external filter type NF LT 5B3 0xx

No additional filtering required

Use screened motor cable

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4 lectrical Installationstallation

EMC filter varistor disconnection (IP20)

IP20 drives with an EMC filter fitted (e.g. MOVITRAC® LTP-B xxxx xAxx 00 andMOVITRAC® LTP-B xxxx xBxx 00) have an inherently higher leakage current to ground(Earth) than units without EMC filter. If more than 1 MOVITRAC® LTP-B unit is beingoperated on earth leakage detectors, an earth leakage detector trip may occur, particu-larly if screened / shielded cables are used. The EMC filter can be disconnected byremoving the EMC screw on the side of the unit.

• WARNING Risk of electrical shock. High voltages are present in the terminals andwithin the drive for up to 10 minutes after the electrical supply has been discon-nected.

Severe or fatal injuries.

– Disconnect and isolate the MOVITRAC® LTP-B from the electrical supply at least10 minutes before removing the EMC screw.

The MOVITRAC® LTP-B units are fitted with components which suppress surges in theinput supply voltage. These components protect the power input circuits against voltagespikes, which may originate from lightning strikes or other equipment on the samesupply.

When carrying out a high potential (Flash) test on a drive system, the components whichsuppress voltage surges may cause the test to fail. To accommodate high voltagesystem tests remove both screws on the side of the unit, which disconnects thesecomponents. Once the high potential test has been completed, replace both screws andrepeat the test. The test should then fail, indicating that the circuit is once againprotected against voltage surges.

3034074379

[1] EMC screw

[2] VAR screw

3479228683

[1] [2]

Filter coil

L1

L2L3

L1

L2L3

earth

VARscrew

EMCscrew

earth

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5User interfaceStartup

5 Startup5.1 User interface5.1.1 Keypad

Each MOVITRAC® LTP-B has an integrated keypad as standard, allowing drive opera-tion and setup without any additional equipment.

The keypad consists of 5 keys with the following functions:

The <start> / <stop/reset> keys on the keypad are disabled when the parameters havetheir factory default settings. To enable the operation of the <start> / <stop/reset> keyson the keypad, set P1-12 to 1 or 2, see chapter "Parameter Group 1: Basic parameters"(page ).

The <navigate> key alone is used to gain access to the parameter edit menu. Pressingand holding this key (> 1 sec) allows the user to toggle between the parameter edit menuand the real time display (where the drive operating status / running speed is displayed).By pressing this key (< 1 sec) the user is able to toggle between the operating speedand operating current during drive operation.

• INFORMATION To reset the drive to factory default settings, press the <up>, <down>, and <stop/reset> keys simultaneously for > 2 s. The display then shows "P-deF".

Press the <stop/reset> key to acknowledge the change and reset the drive.

Start (Run) • Enables the running of the motor• Reverses the direction of rotation if bi-directional keypad mode is enabled

Stop/Reset • Stops the motor• Resets a tripped drive

Navigate • Displays real time information• Press and hold to enter / exit parameter edit mode• Stores parameter changes

Up • Increases speed in real time mode• Increases parameter values in parameter edit mode

Down • Decreases speed in real time mode• Decreases parameter values in parameter edit mode

2933664395

[1] Display [4] Navigate

[2] Start [5] Up

[3] Stop / Reset [6] Down

MO

VIT

RA

C® L

T

[4]

[5]

[6]

[1]

[2]

[3]

Operating Instructions – MOVITRAC® LTP-B

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32

5 ser interfacetartup

Advanced keypad operation shortcuts

5.1.2 DisplayA standard 6-digit, 7-segment display is integrated into each drive to allow driveoperation to be monitored and parameters to be set.

Function When display shows ...

Press ... Result Example

Fast selection of parameter groups1)

1) Parameter group access must be enabled by setting P1-14 to "101".

Px-xx <navigate> + <up> keys

The next highest param-eter group is selected

• Display shows "P1-10"• Press <navigate> + <up> keys• Display now shows "P2-01"

Px-xx <navigate> + <down> keys

The next lowest parame-ter group is selected

• Display shows "P2-26"• Press <navigate> + <down>

keys• Display now shows "P1-01"

Select lowest group parameter

Px-xx <up> + <down> keys The first parameter of a group is selected

• Display shows "P1-10"• Press <up> + <down> keys• Display now shows "P1-01"

Set parameter to minimum value

Any numerical value (whilst editing a parameter value)

<up> + <down> keys The parameter is set to the minimum value

When editing P1-01:• Display shows "50.0"• Press <up> + <down> keys• Display now shows "0.0"

Adjusting individ-ual digits within a parameter value

Any numerical value (whilst editing a parameter value)

<stop/reset> + <navigate> keys

Individual parameter digits can be adjusted

When editing P1-10:• Display shows "0"• Press <stop/reset> +

<navigate> keys• Display now shows "_0"• Press <up> key• Display now shows "10"• Press <stop/reset> +

<navigate> keys• Display now shows "_10"• Press <up> key• Display now shows "110"

etc.

US

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5Easy startup for MOVITRAC® LTP-BStartup

5.2 Easy startup for MOVITRAC® LTP-B1. Connect the motor to the drive, checking the connection for the motor voltage rating.

2. Enter the motor data from the motor nameplate:

• P1-08 = motor rated current

• P1-09 = motor rated frequency

3. Adjust the maximum and minimum speed limit using P1-01 and P1-02.

4. Adjust the acceleration and deceleration times using P1-03 and P1-04.

5. Set up the motor nameplate data in parameters P1-07 to P1-10.

5.2.1 Drive setup for permanent magnet motorsMOVITRAC® LTP-B can handle encoderless permanent magnet motors. To run thedrive, several settings must be made.

Easy setup for SEW-EURODRIVE preset motors

If one of the following motors is connected to the drive, easy setup can be carried out:

Procedure• Set P1-14 to "1" to access LTX specific parameters

• Set P1-16 to the preset motor - see chapter "LTX specific parameters (Level 1)"(page ).

All necessary parameters (voltage, current etc.) are set automatically.

• INFORMATION If P1-16 is set to "GEARF2" or "GEARF4", the overload protection is set to "300 %"in order to supply a high overload torque. The KTY must be connected to ensuremotor protection. Make sure the motor is protected with an external protecting de-vice.

Motor type Display format

CMP40M

CMP50S / CMP50M /CMP50L

CMP63S / CMP63M / CMP63L

MOVIGEAR® size 2

MOVIGEAR® size 4

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34

5 asy startup for MOVITRAC® LTP-Btartup

Easy setup for SEW-EURODRIVE and 3rd party motors

If a non SEW-EURODRIVE preset motor is connected to MOVITRAC® LTP-B, thefollowing parameters must be set:

• P1-14 = 101

• P1-07 = phase-phase permanent magnet motor voltage at rated speed

• P1-08 = motor rated current

• P1-09 = motor rated frequency

• P1-10 = motor rated speed

• P4-01 = control mode (PM motor speed or torque)

• P4-02 = 1 runs the auto-tune

• INFORMATION For detailed information on parameters P1-07, P1-08 and P1-09 refer to the followingOperating Instructions:

• "Synchronous Servomotors CMP40 – CMP100, CMPZ71 – CMPZ100"

The motor control behaviour (PI-controller) can be adjusted by using P4-03 Vectorspeed controller proportional gain and P4-04 Vector speed controller integral timeconstant.

• WARNING Risk of motor powering up. Auto-tune needs no enable to be carriedout. Once P4-02 is set to "1", the auto-tune runs automatically and the motor ispowered up. The motor may be turning!

Severe or fatal injuries.

– Do not remove the cable during operation.

– Do not touch the motor shaft.

By setting P1-16 to "In-Syn" the overload capacity is set to "150 %", depending onP1-08.

5.2.2 Terminal mode (default setting) P1-12 = 0To operate in terminal mode (default setting):

• Ensure that P1-12 is set to "0" (default setting).

• Connect a switch between terminals 1 and 2 on the user terminal block.

• Connect a potentiometer (1 – 10 k) between terminals 5, 6 and 7 with the wiperconnected to pin 6.

• Enable the drive by making a connection between terminals 1 and 2.

• Adjust the speed with the potentiometer.

• INFORMATION The default settings (P1-12 = 0 and P1-15 = 1) for the optional switch in the IP55 /IP66 switch cabinet is FWD / REV. The motor speed can be set via the potentio-meter.

ES

00

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5Easy startup for MOVITRAC® LTP-BStartup

5.2.3 Keypad mode (P1-12 = 1 or 2)

To operate in keypad mode:

• Change P1-12 to "1" (uni-directional) or "2" (bi-directional).

• Place a wire link or switch between terminals 1 and 2 on the user terminal block toenable the drive.

• Now press the <start> key. The drive enables at 0.0 Hz.

• Press the <up> key to increase the speed.

• To stop the drive, press the <stop/reset> key.

• If the <start> key is now pressed, the drive will return to its original speed.(If bi-directional mode is enabled (P1-12 = 2), pressing the <start> key reverses thedirection.)

• INFORMATION The desired target speed can be preset by pressing the <stop/reset> key whilst thedrive is stopped. When the <start> key is subsequently pressed, the drive will thenramp to this speed.

5.2.4 PID controller mode (P1-12 = 3)The implemented PID controller can be used for temperature control, pressure controlor other applications.

The following illustration shows the installation of the PID controller.

Connect the actual value from the sensor (temperature, pressure etc.) to analog input 1(AI1). The actual value can be scaled up or down or assigned an offset value, therebyadapting it to the working range of the PID controller. See chapter "User PID control(Level 2)" (page ).

The PID controller setpoint reference can be set using P3-05.

In default settings the setting for the speed ramp times has no effect when the PID con-troller is active. Depending on the PID error value (the difference between the setpointand the reference), the ramps can be activated via P3-11.

3004287371

+

Reference voltage preset (P3-05)

SetpointOutput PI

(actual value)

Proportional gain(P3-01)

Integral gain(P3-02)

Differential time (P3-03)

AI1

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5 asy startup for MOVITRAC® LTP-Btartup

5.2.5 Master-Slave mode (P1-12 = 4)

The MOVITRAC® LTP-B has a built-in Master-Slave function. This is a dedicated proto-col for the drive, allowing the Master-Slave communication to take place. Up to 63 drivescan be connected together on a communications network using the RJ45 connector.One drive must be configured as the master with the remaining drives configured asslaves. Only one master drive is permitted per network, and the master drive then out-puts its operating state (e.g. Stopped, Running) and output frequency every 30 ms. Theslave drives will then follow the running / stopped status of the master drive, and themaster drive's output frequency becomes the setpoint frequency for all the slave drives.

Configuring the master drive

The master drive on any network must have communication address 1 on that network.

• Set P5-01 Drive address (communications) to "12".

• Set P1-12 to any value other than 4.

Configuring the slave drive(s)

• Each connected slave drive must have a unique slave communications address setin P5-01. The range of slave addresses available is 2 to 63.

• Set P1-12 to "4".

• Set P2-28 to the mode of speed scaling control.

• Set P2-29 to the value of speed scaling factor.

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5Easy startup for MOVITRAC® LTP-BStartup

5.2.6 Startup for operation via Fieldbus (MOVILINK®) (P1-12 = 5)

• Start the drive as instructed at the start of chapter "Easy startup".

• Set parameter P1-12 to "5" to control the drive via SBus.

• Set P1-14 to "101" (default) to give access to the extended menu.

• Set the values in parameter group 5 as follows:

• For a unique SBus address set P5-01 to between 1 and 63.

• For an SBus baud fitted to the gateway, set P5-02 to "500 kBaud" (default).

• Define the timeout behavior of the drive when communication is interrupted inP5-05:

• 0: Trip and coast to stop

• 1: Ramp to stop and trip

• 2: Ramp to stop (without trip)

• 3: Hold speed (continue with last data)

• Set the timeout time for the communications channel in P5-06.

• Set P5-07 to "1" to control ramp times via process data (PO3). Setting to "0" indicatesthat ramp times are followed by setting in P1-03 or P1-04.

• Connect the drive via SBus to the DFx / UOH-Gateway according to chapter "RJ45communication socket" (page 27).

• Set the dipswitch AS on the DFx / UOH-Gateway from OFF to ON to perform theauto-setup for the fieldbus gateway. The LED "H1" on the gateway will flash repeat-edly and then remain off. If the LED "H1" is lit then the gateway or one of the driveson the SBus isn’t connected or wasn’t started correctly.

• The configuration of the fieldbus communication between DFx / UOH-Gateway andbus master is described in the corresponding DFx manual.

Wiring for Gateway and MOVI-PLC®

3004312587

[A] Bus connection

[B] Gateway (e.g. DFx / UOH-Gateway)

[C] Cable to wire

[D] Splitter

[E] Selection cable

[F] Terminating resistor

A B D D F

C E

DFP 21B

RUN

X30

BUSFAULT

ADDRESS

200 1

2122

23

242526

nc

max. 8

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5 asy startup for MOVITRAC® LTP-Btartup

Connecting Gateway / PLC in UOH housing

Monitoring of the data transferred

The monitoring of the data transferred via the gateway can be achieved via one of thefollowing options:

• MOVITOOLS® MotionStudio via the gateway’s X24 engineering interface or optionalvia Ethernet.

• The gateway’s web page (e.g. on DFE3x Ethernet gateways).

Description of the transferred process data (PD)

Process-data words (16-bit) from the gateway to the drive (PO):

Side viewStand-alone unit

Designation Terminal Connection to RJ45 connector (page 27)

2108496651

X26 connector: CAN 1 and voltage supply (plug-in terminal)

X26:1 CAN 1H SBus+

X26:2 CAN 1L SBus-

X26:3 DGND 0 V

X26:4 Reserved –

X26:5 Reserved –

X26:6 DGND –

X26:7 DC 24 V –

2 3 4 5 6 71

X26

Description Bit Settings

PO1 Control word 0 Controller inhibit 0: Run1: Stop

1 Fast stop on 2nd deceleration ramp (P-24) 0: Fast stop1: Run

2 Stop on process ramp P1-03 / P1-04 or PO3

0: Stop1: Run

3 – 5 Reserved 0

6 Trip reset Edge 0 to 1 = trip reset

7 – 15 Reserved 0

PO2 Setpoint speed Scaling: 0x4000 = 100 % of maximum speed as set in P1-01Values greater than 0x4000 or less than 0xC000 are limited to 0x4000 / 0xC000

PO3 Ramp-Time (if P5-07 = 1)

Scaling: acceleration and deceleration in ms for rated speed n = 50 Hz

No function (if P5-07 = 0)

Ramp times as set in P1-03 and P1-04

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5Easy startup for MOVITRAC® LTP-BStartup

Process-data words (16-bit) from the drive to the gateway (PI):

Description Bit Settings Byte

PI1 Status word 0 Enable output stage 0: Disabled1: Enabled

Low byte

1 Inverter ready 0: Not ready1: Ready

2 PO data enabled 1 if P1-12 = 5

3 – 4 Reserved

5 Fault / Warning 0: No fault 1: Fault

6 Limit switch clockwise active 0: Disabled1: Enabled

7 Limit switch counterclockwise active

0: Disabled1: Enabled

8 – 15 Drive status if Bit 5 = 00x01 = Safe stop active0x02 = No enable0x05 = Speed control0x06 = Torque control0x0A = Technologie function0x0C = Reference travel

High byte

8 – 15 Drive status if Bit 5 = 1See chapter "Fault codes" (page 44) .

PI2 Actual speed Scaling: 0x4000 = 100 % of maximum speed as set in P1-01

PI3 Actual current Scaling: 0x4000 = 100 % of maximum current as set in P1-08

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Example:The following information will be sent to the drive if:

• the binary inputs are configured and wired correctly to enable the drive.

• parameter P1-12 is set to "5" to operate the drive via SBus.

The process data read back from the drive should be in run condition:

5.2.7 Fieldbus / Modbus (P1-12 = 7)To operate in Modbus RTU mode, P1-12 must be set to "7". The drive address is thesame as the SBus address. The Modbus modes and baudrate can be set via parametergroup 5. See chapter "Modbus control" (page 76) for the Modbus register description.

• INFORMATION Modbus is not available if the LTX encoder module is fitted.

5.2.8 MOVI-PLC® Motion Protocol (P1-12 = 8)If MOVITRAC® LTP-B runs with or without an LTX encoder module in CCU mode for aMOVI-PLC®, the drive must be set to the following parameters:

• Set P1-14 to "1" to enable the LTX specific parameter group (parameters P1-01 –P1-20 are now visible).

• If a Hiperface® encoder is connected to the encoder card, P1-16 should display thecorrect motor type. Otherwise the specific motor type must be selected via the<up> or <down> keys.

• Assign a unique drive address in P1-19.

• The SBus baudrate (P1-20) must be set to "1000 kbaud".

Description Value Description

PO1 Control word 0 Stop on 2nd deceleration ramp (P2-25)

1 Coast to stop

2 Ramp to stop on process ramp P1-04

3 – 5 Reserved

6 Ramp up (P1-03) and run with setpoint speed (PO2)

PO2 Setpoint speed 0x4000 = 16384 = maximum speed e.g. 50 Hz (P1-01) clockwise

0x2000 = 8192 = 50 % of maximum speed e.g. 25 Hz clockwise

0xC000 = –16384 = maximum speed e.g. 50 Hz (P1-01) counterclockwise

0x0000 = 0 = minimum speed as set in P1-02

Description Value Description

PI1 Status word 0x0407 Status = runOutput stage enabledDrive readyPO-Data enabled

PI2 Actual speed Should be equal to PO2 (setpoint speed)

PI3 Actual current Depends on speed and load

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6Drive statusOperation

6 OperationTo enable the operational status of the drive to be determined at any time, the followinginformation is displayed:

6.1 Drive status6.1.1 Static drive status

The following list indicates which mnemonics will be displayed as drive status informa-tion when the motor is at a standstill.

6.1.2 Operational drive statusThe following list indicates which mnemonics will be displayed as drive status informa-tion when the motor is in operation.

Use the <navigate> key on the keypad to toggle between output frequency, outputcurrent and speed.

Status Mnemonic display

Drive OK Static drive status

Drive running Operational drive status

Fault / trip Fault

Mnemonic Description

StoP Drive power stage disabled. This message will be displayed when the drive is stopped and no faults are present. The drive is ready for normal operation.

P-deF Default parameters loaded. This message will be displayed when the user invokes the command to load the factory default parameters. The <stop/reset> key has to be pressed before the drive can be operated again.

Stndby Drive is in standby mode. If P2-27 is greater than 0 s, this message will be dis-played after the drive is on zero speed and the setpoint is also "0".

Inhibit Drive will show inhibit if the STO contacts are not supplied with 24 V and GND. Output stage is disabled.

Mnemonic Description

H xxx The drive output frequency is displayed in Hz. This message will be displayed when the drive is running.

A xxx The drive output current is displayed in Amps. This message will be displayed when the drive is running.

P xxx The current drive output power is displayed in kW. This message will be dis-played when the drive is running.

Auto-t Automatic motor parameter measurement is carried out to configure the motor parameters. Auto-tune runs automatically on first enable if the drive is set to "Vector mode" (P4-01) after the parameter default operation. No hardware enable is required to run auto-tune.

Ho-run Reference travel started. Wait until drive is in reference position. Display will show "Stop" after success.

xxxx The drive output speed is displayed in rpm. This message will be displayed when the drive is running and the motor rated speed is entered in parameter P1-10.

C xxx Speed scaling factor (P2-21 / P2-22).

. . . . . . (flashing dots) The output current of the drive exceeds the current set in P1-08.MOVITRAC® LTP-B will monitor the level and duration of the overload. Depend-ing on the overload level, the MOVITRAC® LTP-B will trip with "I.t-trP".

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42

6 rive statusperation

6.1.3 Trip resetIf a trip occurs it can be reset by pressing the <stop/reset> key or by opening and closingdigital input 1. See chapter "Fault Codes" (page 44) for further information.

DO

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7TroubleshootingService and fault codes

7 Service and fault codes7.1 Troubleshooting

7.2 Fault historyThe parameter P1-13 in the parameter mode holds a record of the 4 most recent tripsand / or events. Each trip will be displayed in abbreviated text, with the most recent tripbeing displayed first (on entering P1-13).

Whenever a new trip occurs, this is entered at the top of the list and the other trips movedown. The oldest trip will then be removed from the trip log.

• INFORMATION If the most recent trip in the trip log is an "under-voltage" trip, further under-voltagetrips will not be entered into the trip log. This is to ensure that the trip log does not fillup with under-voltage trips which occur naturally every time the MOVITRAC® LTP-Bis turned off.

Symptom Cause and Solution

Overload or over-current trip on unloaded motor during acceleration

Check the Star / Delta terminal connection in the motor. The rated operating voltage of the drive and motor should match. The Delta connection always gives the lower voltage rating of a dual voltage motor.

Overload or over-current – motor does not spin Check whether the rotor is locked. Check that the mechanical brake is released (if fitted).

Drive will not enable – display remains on "StoP" • Check that the hardware enable signal is applied to digital input 1. • Ensure that the user +10 V output voltage (between terminals 5 and 7) is

correct. • If not, check the wiring to the user terminal strip. • Check P1-12 for terminal / keypad mode. • If keypad mode is selected, press the <start> key. • Check that the supply voltage is within specification.

Drive will not power up in very cold ambient temperatures

If the ambient temperature is less than –10 °C, the drive may not power up. Ensure that a local heating source keeps the ambient temperature above –10 °C in these conditions.

Extended menus cannot be accessed Ensure that P1-14 is set to the extended access code. This is "101" unless the code in P2-40 has been changed by the user.

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44

7 ault codeservice and fault codes

7.3 Fault codes

Code Trip message Explanation Solution

01 "h-O-I""O-I"

Over-current on drive output to motor.Excess load on motor.Over temperature on drive heat-sink.

Trip during constant speed:• Investigate overload or malfunction.

Trip on drive enable:• Check for stalled or jammed motor.• Check for star-delta motor wiring error.• Check cable length is within drive specification.

Trip during operation:• Check for sudden overload or malfunction.• Possible cable fault between drive and motor.• Acceleration / deceleration time may be too

short, requiring too much power. If P1-03 or P1-04 cannot be increased, a larger drive is required.

04 "OI-b" Brake channel over current. Over current in the brake resistor circuit.

• Check cabling to the braking resistor.• Check braking resistor value.• Ensure minimum resistance values from the

rating tables are observed.

"OL-br" Braking resistor overload • Increase deceleration time, reduce load inertia or add further braking resistors in parallel.

• Ensure minimum resistance values from the rating tables are observed.

06 "P-LOSS" Input phase loss trip Drive intended for use with 3-phase supply has lost 1 input phase.

07 "O.Uolt" Over-voltage on DC bus • Check supply voltage is within limits.• If trip occurs on deceleration, increase deceler-

ation time in P1-04.• If necessary, connect a braking resistor.

"Flt-dc" DC-bus ripple too high Check power supply

08 "I.t-trP" Drive overload trip, occurring when the drive has been deliver-ing > 100 % rated current (set in P1-08) for a period of time. The display flashes to indicate an overload condition.

• Increase acceleration ramp (P1-03) or decrease motor load.

• Check cable length is within drive specification.• Check the load mechanically to ensure it is free

and no jams, blockages or other mechanical faults exist.

11 "O-t""O-HFAT"

Heatsink over temperature • Check drive cooling and enclosure dimensions.• Additional space or cooling may be required.• Reduce switching frequancy

14 "Enc 01" Encoder feedback faults(Only visible when an encoder module is connected and enabled)

Encoder communication loss

"Enc 02" Encoder feedback speed error

"Enc 03" • Incorrect encoder PPR count set in parameters• Check P1-10 for correct nameplate speed

"Enc 04" Hiperface® signal loss / line encoder channel A error

"Enc 05" Line encoder channel B error

"Enc 06" Line encoder channel A and B error

"Enc 07" • Hiperface® data channel error• Motor is spinning during power up

"Enc 08" Hiperface® IO communication channel fault

"Enc 09" Hiperface® type not supported

"Enc 10" KTY not connected

FS

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7Fault codesService and fault codes

25 "dAtA-E" Internal memory fault • Parameters not saved, defaults reloaded.• Try again. If problem reoccurs, contact SEW-

EURODRIVE Service.

"data-F" EEPROM fault. Parameters not saved, defaults reloaded.

EEPROM fault. Parameters not saved, defaults reloaded. If fault reoccurs contact SEW-EURO-DRIVE Service.

26 "E-triP" External trip (connected to digital input 5)

• E-trip on digital input 5. Normally closed contact has opened for some reason.

• Check motor thermistor (if connected).

31 "F-PTC" Motor thermistor trip • Trip on digital input 5. Normally closed contact has opened.

• Check motor thermistor• Check motor temperature

39 "Ho-trp" Reference travel failed • Check reference cam• Check limit switch connection• Check reference travel type setting and

required parameters.

42 "Lag-Er" Lag errror trip • Check encoder connection• Extend ramps• Set P component to higher value• Reset speed controller parameters• Increase lag error tolerance• Check wiring of encoder, motor and line phase.• Check whether mechanical system compo-

nents can move freely or if they are blocked

47 "Sc-Fxx" Communication loss trip • Check communication link between drive and external devices.

• Make sure each drive in the network has its unique address.

81 "At-F01" Auto-tune failed Measured motor stator resistance varies between phases.• Ensure motor is connected correctly and free

from faults.• Check windings for correct resistance and bal-

ance.

"At-F02" • Measured motor stator resistance is too high.• Ensure motor is connected correctly and free

from faults.• Check that power rating corresponds to power

rating of connected drive.

"At-F03" • Measured motor inductance is too low.• Ensure motor is connected correctly and free

from faults.

"At-F04" • Measured motor inductance is too high.• Ensure motor is connected correctly and free

from faults.• Check that power rating corresponds to power

rating of connected drive.

"At-F05" • Measured motor parameters are not conver-gent.

• Ensure motor is connected correctly and free from faults.

• Check that power rating corresponds to power rating of connected drive.

113 "4-20 F" Analog input current out of range • Check input current is within range defined in P2-30 and P2-33.

• Check cable connection.

117 "U-t" Under temperature • Occurs when ambient temperature is less than –10 °C

• Raise temperature to over –10 °C in order to start the drive.

198 "U.Uolt" Under-voltage on DC bus Occurs routinely when drive powered down. If it occurs whilst running, check supply voltage.

Code Trip message Explanation Solution

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46

7 EW electronics serviceervice and fault codes

7.4 SEW electronics service7.4.1 Send in for repair

Please contact SEW-EURODRIVE electronics service if a fault cannot be rectified.

Please provide the following information when sending the unit in for repair:• Serial number (→ nameplate)

• Unit designation

• Brief description of the application (application, control via terminals or serial)

• Connected components (motor, etc.)

• Nature of the error

• Accompanying circumstances

• Your own presumption of what has happened

• Any unusual events preceding the problem, etc.

200 "PS-trP" Internal power stage fault Trip on drive enable:• Check for wiring error or short circuit.• Look for ph-ph or ph-Earth short circuit.Trip during operation: • Check for sudden overload or over-tempera-

ture.• Additional space or cooling may be required.

"FAN-F" Cooling fan fault Contact SEW-EURODRIVE Service

"th-Flt" Faulty thermistor on heatsink Contact SEW-EURODRIVE Service.

– "P-dEF" Factory default parameters have been loaded.

Press <stop> key. Drive is ready to configure for particular application.

– "SC-FLt" Internal drive fault Contact SEW-EURODRIVE Service.

"FAULtY"

"Prog_ _"

– "Out.F" Internal drive fault Contact SEW-EURODRIVE Service.

– "U-torq" Under torque limit timeout • Torque threshold not exceeded in time• Increase time in P4-16 or• Increase torque limit in P4-15

– "O-torq" Over torque limit timeout • Check motor load• Increase value in P4-07

– "Etl-24" External 24 V operation Power supply is not connected• Check supply voltage and connection

Code Trip message Explanation Solution

SS

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8Overview of parametersParameters

8 Parameters8.1 Overview of parameters8.1.1 Real-time monitoring parameters (read-only)

Parameter group 0 provides access to internal drive parameters for monitoringpurposes. These parameters cannot be adjusted.

Parameter group 0 is visible if P1-14 is set to "101".

Parameter Description Display range Explanation

P0-01 Analog input 1 value 0 – 100 % 100 % = maximum input voltage

P0-02 Analog input 2 value 0 – 100 % 100 % = maximum input voltage

P0-03 Digital input status Binary value Digital drive input status

P0-04 Speed controller reference –100.0 – 100.0 % 100 % = base frequency (P1-09)

P0-05 Torque controller reference 0 – 100.0 % 100 % = motor rated torque

P0-06 Digital speed reference –P1-01 – P1-01 in Hz Speed displayed in Hz / rpm

P0-07 Speed reference via communications link

–P1-01 – P1-01 in Hz –

P0-08 User PID reference 0 – 100 % PID controller reference value

P0-09 User PID feedback 0 – 100 % PID controller feedback value

P0-10 User PID output 0 – 100 % Reference – Feedback

P0-11 Applied motor voltage V rms Value of RMS voltage applied to motor

P0-12 Output torque 0 – 200.0 % Torque output in %

P0-13 Trip log Recent 4 trips log with time tag

Shows 4 most recent trips.UP / DOWN keys toggle between sub-items.

P0-14 Magnetising current (Id) A rms Magnetising current in A rms

P0-15 Rotor current (Iq) A rms Rotor current in A rms

P0-16 Magnetic field strength 0 – 100 % Magnetic field strength

P0-17 Stator resistance (Rs) Ω Phase – Phase stator resistance

P0-18 Stator inductance (Ls) H Stator inductance in Henry

P0-19 Rotor resistance (Rr) Ω Calculated rotor resistance

P0-20 DC bus voltage V DC Internal DC bus voltage

P0-21 Drive temperature °C Internal drive temperature

P0-22 DC bus voltage ripple V rms Internal DC bus voltage ripple

P0-23 Time accumulated above 80 °C (heatsink)

Hours and minutes Length of time of drive operated > 80°C

P0-24 Time accumulated above 60 °C (ambient)

Hours and minutes Length of time of drive operated > 60°C

P0-25 Rotor speed (estimated) Hz Applies to vector modes only

P0-26 kWh meter 0.0 – 999.9 kWh Cumulative energy consumption

P0-27 MWh meter 0.0 – 65535 MWh Cumulative energy consumption

P0-28 Software version and checksum

e.g. "1 1.00", "1 4F3C" "2 1.00", "2 Ed8A"

Version number and check sum

P0-29 Drive type e.g. "HP 2", "2 400" "3-PhASE"

Version number and check sum

P0-30 Drive Serial number 000000 – 000000 (SN grp 1)000-00 – 999-99 (SN grp 2, 3)

Fixed serial number

P0-31 Hours run since date of manufacture

Hours and minutes Shows global runtime (not affected by resetting factory default parameters)

P0-32 Run time since last trip (1) 99999 hours Run-time clock stopped by drive disable (or trip), reset on next enable only if a trip occurred. Reset also on next enable after a power down.

Operating Instructions – MOVITRAC® LTP-B

Pi

fkVA

Hz

n

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48

8 verview of parametersarameters

P0-33 Run time since last trip (2) 99999 hours Run-time clock stopped by drive disable (or trip), reset on next enable only if a trip occurred (under-voltage not con-sidered a trip). Not reset by power down / power up cycling unless a trip occurred prior to power down. Also on next enable after a power down.

P0-34 Run time since last disable 99999 hours Run-time clock reset after drive disable

P0-35 Drive cooling fan run time Display in hours (resetta-ble + non-resettable)

Run-time clock for internal fan

P0-36 DC bus voltage log (256 ms)

Most recent 8 samples prior to trip

8 most recent values prior to trip

P0-37 DC bus voltage ripple log (20 ms)

Most recent 8 samples prior to trip

8 most recent values prior to trip

P0-38 Heatsink temperature log (30 s)

Most recent 8 samples prior to trip

8 most recent values prior to trip

P0-39 Ambient temperature log (30 s)

Most recent 8 samples prior to trip

8 most recent values prior to trip

P0-40 Motor current log (256 ms) Most recent 8 samples prior to trip

8 most recent values prior to trip

P0-41 Critical fault counter –O–I

– Counter for critical specific fault

P0-42 Critical fault counter –O-Volts

– Counter for critical specific fault

P0-43 Critical fault counter –U–Volts

– Counter for critical specific fault

P0-44 Critical fault counter –O–Temp (Heatsink)

– Counter for critical specific fault

P0-45 Critical fault counter –b O–I

– Counter for critical specific fault

P0-46 Critical fault counter –O-Temp (Ambient)

– Counter for critical specific fault

P0-47 Internal I/O comms error count

0 – 65535 –

P0-48 Internal DSP comms error count

0 – 65535 –

P0-49 Modbus comms error count 0 – 65535 –

P0-50 CANbus comms error count

0 – 65535 –

Parameter Description Display range Explanation

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8Overview of parametersParameters

8.1.2 Parameter registers

The following table lists all parameters together with their factory settings (under-lined): Numerical values are displayed with the complete setting range.

Modbus Register

SEW Index Related Parameter Range / Default

101 11020 P1-01 Maximum speed P1-02 – 50.0 Hz – 5 × P1-09102 11021 P1-02 Minimum speed 0 – P1-01 Hz103 /104 11022 / 11023 P1-03 / P1-04 Acceleration ramp time / Decelera-

tion ramp time 0 – 5.0 – 600 s

105 11024 P1-05 Stop mode 0 / Ramp to stop / 1 / Coast to stop106 11025 P1-06 Energy saving function 0 / Off / 1 / On107 11012 P1-07 Motor rated voltage108 11015 P1-08 Motor rated current 20 % of rated current…rated current109 11009 P1-09 Motor rated frequency 25 – 50/60 – 500 Hz110 11026 P1-10 Motor rated speed 0 – 30000 rpm111 11027 P1-11 Voltage boost 0 – 20 % (default value is drive depending)112 11028 P1-12 Control signal source 0 (Terminal mode)113 11029 P1-13 Trip log114 11030 P1-14 Extended parameter access 0 – 30000115 11031 P1-15 Digital inputs function select 0 – 1 – 25116 11006 P1-16 Motor type In-Syn117 11032 P1-17 Servo module function select 1 – 6118 11033 P1-18 Motor thermistor select 0 / Disabled119 11105 P1-19 Drive address 1 – 63120 11106 P1-20 SBus baudrate 125, 250, 500, 1000 kbaud121 11017 P1-21 Stiffness122 11149 P1-22 Motor load inertia 0 – 10 – 600201 11036 P2-01 Preset speed 1 -P1-01 – 5.0 Hz – P1-01202 11037 P2-02 Preset speed 2 -P1-01 – 10.0 Hz – P1-01203 11038 P2-03 Preset speed 3 -P1-01 – 25.0 Hz – P1-01204 11039 P2-04 Preset speed 4 -P1-01 – 50.0 Hz – P1-01205 11040 P2-05 Preset speed 5 -P1-01 – 0.0 Hz – P1-01206 11041 P2-06 Preset speed 6 -P1-01 – 0.0 Hz – P1-01207 11042 P2-07 Preset speed 7 -P1-01 – 0.0 – P1-01208 11043 P2-08 Preset speed 8 -P1-01 – 0.0 – P1-01209 11044 P2-09 Skip frequency centre point P1-02 – P1-01210 11045 P2-10 Skip frequency band 0.0 Hz – P1-01211 11046 P2-11 – P2-14 Analog outputs 0 – 8 – 12212 11047 P2-12 Analog output format 0 – 10 V213 11048 P2-13 Analog output 2 function select 0 – 9 – 12214 11049 P2-14 Analog output 2 format 0 – 10 V215 11050 P2-15 User relay 1 output function select 0 – 1 – 7216 11051 P2-16 User relay 1 /analog output 1 upper limit 0.0 – 100.0 – 200.0 %217 11052 P2-17 User relay 1 / analog output lower limit 0.0 – 200.0 %218 11053 P2-18 User relay 2 output function select 0 – 1 – 8219 11054 P2-19 User relay 1 /analog output 1 upper limit 0.0 – 100.0 – 200.0 %220 11055 P2-20 User relay 1 / analog output lower limit 0.0 – 200.0 %221 11056 P2-21 Display scaling factor -30.000 – 0.000 – 30000222 11057 P2-22 Display scaling source223 11058 P2-23 Zero speed holding time 0.0 – 0.2 – 60.0 s224 11003 P2-24 Switching frequency 2 – 16 kHz (drive depending)225 11059 P2-25 2nd deceleration ramp 0.00 – 30.0 s226 11060 P2-26 Flying start enable 0 / Disabled227 11061 P2-27 Standby mode 0.0 – 250 s228 11062 P2-28 Slave speed scaling control 0 / Disabled229 11063 P2-29 Slave speed scaling factor -500 – 100 – 500 %

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8 verview of parametersarameters

230 11064 P2-30 Analog input 1 format 0 – 10 V, 10 – 0 V / / Unipolar voltage input231 11065 P2-31 Analog input 1 scaling 0 – 100 – 500 %232 11066 P2-32 Analog input 1 offset -500 – 0 – 500 %233 11067 P2-33 Analog input 2 format234 11068 P2-34 Analog input 2 scaling 0 – 100 – 500 %235 11069 P2-35 Analog input 2 offset -500 – 0 – 500 %236 11070 P2-36 Start mode select237 11071 P2-37 Keypad restart speed238 11072 P2-38 Mains loss stop control239 11073 P2-39 Parameter lock 0 / Disabled240 11074 P2-40 Extended parameter access code defini-

tion 0 – 101 – 9999

301 11075 P3-01 PID proportional gain 0.1 – 30.0302 11076 P3-02 PID integral time constant 0.0 – 1.0 – 30.0303 11077 P3-03 PID differential time constant 0.00 – 1.00304 11078 P3-04 PID operating mode 0 / Direct operation305 11079 P3-05 PID reference select306 11080 P3-06 PID digital reference 0.0 – 100.0 %307 11081 P3-07 PID controller high limit P3-08 – 100.0 %308 11082 P3-08 PID controller low limit 0.0 % – P3-07 %309 11083 P3-09 PID output control310 11084 P3-10 PID feedback select 0 / Analog input 2311 11085 P3-11 PID error to enable ramps 0.0 – 25.0 %312 11086 P3-12 PID feedback value display scaling factor 0.000 – 50.000313 11087 P3-13 PID feedback wake-up level 0.0 – 100.0 %401 11089 P4-01 Control mode 2/ Speed control - Enhanced V/F402 11090 P4-02 Auto tune 0 / Disable403 11091 P4-03 Speed controller Proportional gain 0.1 – 50 – 400 %404 11092 P4-04 Speed controller Integral time constant 0.001 – 0.100 – 1.000 s405 11093 P4-05 Motor power factor 0.50 – 0.99 (drive depending)406 11094 P4-06 Torque control reference 0 / Maximum torque limit407 11095 P04-07 Maximum motoring torque limit P4-08 – 200 – 500 %408 11096 P4-08 Minimum torque limit 0.0 – P4-07 %409 11097 P4-09 Maximum regenerating torque limit P4-08 – 200 – 500 %410 11098 P4-10 V/F characteristic adjustment frequency 0.0 – 100.0 % of P1-09411 11099 P4-11 V/F characteristic adjustment voltage 0.0 – 100.0 % of P1-07412 11100 P4-12 Motor brake control 0 / Disabled / 1 / Enabled413 11101 P4-13 Motor brake release time 0.0 – 0.2 – 5.0 s414 11102 P4-14 Motor brake apply time 0.0 – 5.0 s415 11103 P4-15 Torque threshold for brake release 0.0 – 1.0 – 200 %416 11104 P4-16 Torque threshold timeout 0.0 – 5.0 s501 11105 P5-01 Drives address 1 – 63502 11106 P5-02 SBus baudrate503 11107 P5-03 Modbus baudrate504 11108 P5-04 Modbus data format n-1 / No parity, 1 stop bit505 11109 P5-05 Communication loss action 2 / Ramp to stop (no trip)506 11110 P5-06 Communication loss timeout 0.0 – 1.0 – 5.0 s507 11111 P5-07 Ramps set via SBus 0 / Disabled508 11112 P5-08 Sync. Cyclic period 0, 5 – 10 ms

Modbus Register

SEW Index Related Parameter Range / Default

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8Explanation of the parametersParameters

8.2 Explanation of the parameters8.2.1 Paramertergroup 1: Basic parameters (Level 1)P1-01 Maximum speed

Setting range: P1-02 – 50.0 Hz – 5 × P1-09 (but max 500 Hz)

Sets the upper limiting boundary defining the maximum frequency (speed) that can beapplied to the motor in any mode of operation. This parameter will be displayed in Hz inthe factory default state or whenever the motor rated speed parameter (P1-10) is zero.If the motor rated speed in rpm has been entered into P1-10, this parameter will be dis-played in rpm.

The maximum speed is also limited by the switching frequency, which is set by P2-24.The limit is given by : Maximum output frequency to motor = P2-24 / 16.

P1-02 Minimum speed

Setting range: 0 – P1-01 Hz

Sets the lower limiting boundary defining the minimum frequency (speed) that can beapplied to the motor in any mode of operation. This parameter will be displayed in Hz inthe factory default state or whenever the motor rated speed parameter (P1-10) is zero.If the motor rated speed in rpm has been entered into P1-10, this parameter will be dis-played in rpm.

The speed will only drop below this level after the drive enable signal has been removed,when the drive will ramp the output frequency to zero.

P1-03 / P1-04 Acceleration ramp time / Decelera-tion ramp time

Setting range: 0 – 5.0 – 600 s

Defines the time taken in seconds for the output frequency (speed) to increase/decreasefrom zero to 50 Hz / 50 Hz to zero. Note that the ramp rate is unaffected by changingeither the maximum or minimum speed limits since the ramp time is related to 50 Hz andnot to P1-01 / P1-02.

P1-05 Stop mode Setting range: 0 / Ramp to stop / 1 / Coast to stop

• 0 / Ramp stop: The drive speed is ramped down to zero according to the setting ofP1-04 whenever the drive enable signal is removed. The power stage will only bedisabled when the drive output frequency reaches zero. (If a zero speed holding timeis set in P2-23, this the drive will hold zero speed for this time before disabling).

• 1/ Coast to stop: In this case, the drive output will be disabled as soon as the enablesignal is removed, leaving the motor to coast down to zero in an uncontrolled fashion(coast to stop)

P1-06 Energy saving function

Setting range: 0 / Off / 1 / On

When enabled the drive automatically reduces the applied motor voltage on light load

P1-07 Motor rated voltage

Setting range:

• 230 V drives: 0,20 – 230 – 250 V

• 400 V drives: 0,20 – 400 – 500 V

Defines the rated voltage of the motor connected to the drive (as stamped on the motorname plate). The parameter value will be used in V/F speed control mode to control theoutput voltage applied to the motor. In V/F speed control mode, the drive output voltagewill be controlled so as to give the value set in P1-07 when the output speed is equal tothe motor base frequency defined in P1-09.

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8 xplanation of the parametersarameters

P1-08 Motor rated current

Setting range: 20 % of rated current…rated current in absolute value

Defines the rated current of the motor connected to the drive (as stamped on the motorname plate). This allows the drive to match its internal motor thermal protection (I x t pro-tection) to the motor itself. This ensures that the drive will trip on motor overload (I.t-trP)before any thermal damage results in the motor.

P1-09 Motor rated frequency

Setting range: 25 – 50/601) – 500 Hz

Defines the rated frequency of the motor connected to the drive (as stamped on themotor name plate). This is the frequency at which maximum (rated) output voltage willbe applied to the motor. Above this frequency, the applied motor voltage is held constantat its maximum value.

P1-10 Motor rated speed

Setting range: 0 – 30000 rpm

Defines the rated speed of the motor (in rpm) to be connected to the drive (as stampedon the motor name plate) which should be entered into this parameter if it is requiredthat the drive displays its speed in rpm. When a non-zero value has been entered, theoperating speed will be displayed in rpm. The speed related parameters (i.e. P1-01, P1-02, P2-02 etc) will also be displayed in rpm.

In vector mode, the displayed value in rpm represents the shaft speed of the motor. InV/F speed control mode, entering a non-zero value into this parameter will activate theautomatic slip compensation. If the synchronous speed has been entered into P1-10,slip compensation will be disabled, but the speed display will still be in rpm.

P1-11 Voltage boost

Setting range: 0 – 20 % (default value is depending on inverter voltage and kW rating)

Sets the applied boost voltage at low speeds to assist with starting sticky loads. It mod-ifies the V/F characteristics in limits setting by ½ P-07 and ½ P1-09.

1) 60 Hz (American Version only)

2933868939

f

2

P-07

P-07

2P-09 P-09

0 %

10 %

20 %

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8Explanation of the parametersParameters

P1-12 Control signal source

This parameter allows the user to define whether the drive should be controlled from theuser terminal connector, from the push buttons on the front of the keypad or to enablethe internal PID controller. See chapter "Easy startup for frequency inverter mode"(page 33) .

• 0 (Terminal mode)

• 1 or 2 (Keypad mode)

• 3 (PID controller mode)

• 4 (Slave mode)

• 5 (SBus Movilink)

• 6 (CANopen)

• 7 (Fieldbus/Modbus)

• 8 (Multimotion)

P1-13 Trip log Holds a record of the most recent four trips and / or events that have occurred. Each tripwill be displayed in abbreviated text, with the most recent trip being displayed first.Whenever a new trip occurs, this is entered at the top of the list and the other trips areshifted down. The oldest trip will then be removed from the trip log. Note that if the mostrecent trip in the trip log is an "Under-voltage' trip, further Undervoltage trips will not beentered into the trip log. This ensures that the trip log does not fill up with Under-voltagetrips, which naturally occur every time the drive is turned off.

P1-14 Extended parameter access

Setting range: 0 – 30000

This parameter allows the user to gain access to parameter groups other than the basicparameter set (parameter P1-01..P1-15). Access is permitted when the following valueentered is valid.

• 0 / P1-01..P1-15

• 1 / P1-01..P1-22

• 101 /P1-01..P5-08

P1-15 Digital inputs function select

Setting range: 0 – 1 – 25

Defines the function of the digital inputs. See chapter "P1-15 Digital inputs function se-lect" (page 71) .

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8 xplanation of the parametersarameters

8.2.2 Servo specific parameters (Level 1)P1-16 Motor type Selects the type of motor

Use this parameter to select preset motors (CMP and MOVIGEAR®). This parameter isset automatically if Hiperface encoder information is read via LTx encoder card.

When permanent magnet motor is connected and the drive is operating in frequency in-verter mode, P1-16 doesn't need to be changed. In this case P4-01 selects the motortype (Autotune necessary).

P1-17 Servo module function select

Setting range: 1 – 6

Selects functionality of servo module I/O. See chapter P1-17 servo module function se-lect".

P1-18 Motor thermistor select

0 / Disabled

1 / KTY

Note if a motor is selected via P1-16 this parameter will change to 1. Available in Con-juction with LTx-Servomodule only.

Display value Motor type Explanation

Induction motor

Default setting. Leave it as it is if none of the other selections are appropriate.The selection of Induction motor or permanent mag-net motor is done via P4-01.

Undefined Servo motor

Undefined servo motor. Specific servo parameter have to be set during the drive startup. (see chapter 5.2.1). In this case P4-01 has to be set to PM motor control operation.

CMP40M Preset SEW-Eurodrive CMP motors. By selecting one of these motor types all motor specific parameters are set automatically. The overload behavior is set to 200% for 60s and 250% for 2s.CMP40M with brake

CMP50S

CMP50S with brake

CMP50M

CMP50M with brake

CMP50L

CMP50L with brake

CMP63S

CMP63S with brake

CMP63M

CMP63M with brake

CMP63L

CMP63L with brake

Movigear size 2 Selection for Movigear operation. Select the matching size. All necessary parameters are set automatically. The overload in this case is 300% of nominal current.Movigear size 4

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8Explanation of the parametersParameters

P1-19 Drive address

Setting range: 1 – 63

Mirror parameter of P5-01. A change of P1-19 will have an immediate effect of P5-01

P1-20 SBus baudrate

Setting range: 125, 250, 500, 1000 kbaud

This parameter is a mirror parameter of P5-02. A change of P1-20 will have an immedi-ate effect of P5-02.

P1-21 Stiffness

P1-22 Motor load inertia

Setting range: 0 – 10 – 600

Allows the inertia ratio between the motor and connected load to be entered into thedrive. This value can normally be left at the default value 10; however it is used by thedrive control algorithm as a feed forward term for CMP/PM motors in order to provideoptimum torque/current to accelerate the load. Hence accurate setting of the inertia ratiowill produce better system response and dynamics. The calculation for closed loop op-eration is

If value is unknown then leave value set to default 10.

8.2.3 Parametergroup 2: Extended parameter setting (Level 2)P2-01 Preset speed 1

Setting range: -P1-01 – 5.0 Hz – P1-01

P2-02 Preset speed 2

Setting range: -P1-01 – 10.0 Hz – P1-01

P2-03 Preset speed 3

Setting range: -P1-01 – 25.0 Hz – P1-01

P2-04 Preset speed 4

Setting range: -P1-01 – 50.0 Hz – P1-01

P2-05 Preset speed 5

Setting range: -P1-01 – 0.0 Hz – P1-01

Also used for homing mode speed

P2-06 Preset speed 6

Setting range: -P1-01 – 0.0 Hz – P1-01

Also used for homing mode speed

P2-07 Preset speed 7

Setting range: -P1-01 – 0.0 – P1-01

Used for brake release speed in hoist mode

P2-08 Preset speed 8

Setting range: -P1-01 – 0.0 – P1-01

Used for brake apply speed in hoist mode

P PJLoadcomplete

M smotor1 2

0

105

2− = •

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8 xplanation of the parametersarameters

P2-09 Skip frequency centre point

Setting range: P1-02 – P1-01

The skip window center and skip width are values and automatically have an effect onpositive and negative setpoints when activated. The function is deactivated by settingthe skip width to 0.

P2-10 Skip frequency band

Setting range: 0.0 Hz – P1-01

P2-11 – P2-14 Analog outputs

Digital output mode: (0V/24V)

Analog output mode: (0..10V or 0/4..20mA)

P2-11 Analog output 1 function select

Setting range: 0 – 8 – 12

3463466251

P2-10P2-09

n-setpoint(integrator

input)

Ramps

n-setpoint setpoint(integratoroutput)

Output speed

n-setpointpositive and negative

Set. Function Explanation0 Drive enabled Logic 1 when drive enabled (running)1 Drive healthy (digital) Logic 1 when no fault exists on drive2 Motor at target speed (digital) Logic 1 when motor speed matches setpoint speed3 Motor speed ≥ 0 (digital) Logic 1 when motor runs above 0 speed4 Motor speed ≥ limit (digital) Digital output enabled using level set in limit “User relay/analog

output upper limit” and “user relay/analog output lower limit”.5 Motor torque ≥ limit (digital)6 Analog input 2 ≥ limit (digital)7 Motor current ≥ limit (digital)

Set. Function Explanation8 Motor speed (analog) The amplitude of the analog output signal represents the motor

speed. It is scaled from zero to the maximum speed limit, as defined in P1-01.

9 Motor current (analog) The amplitude of the output analog signal represents the motor load current (torque). It is scaled from zero to 200 % of motor rated current, as defined in P1-08.

10 Motor torque (analog)

11 Motor power (analog) The amplitude of the output analog signal represents the output power of the drive. It is scaled from zero to drive rating power.

12 SBus (analog) Analog output value is controlled via SBus if P1-12=8

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8Explanation of the parametersParameters

P2-12 Analog output format

0 – 10 V

10 – 0 V

-10 – 10 V

0 – 20 mA, 20 – 0 mA

4 – 20 mA, 20 – 4 mA

P2-13 Analog output 2 function select

Setting range: 0 – 9 – 12

Parameter description as P2-11

P2-14 Analog output 2 format

0 – 10 V

10 – 0 V

-10 – 10 V

0 – 20 mA, 20 – 0 mA

4 – 20 mA, 20 – 4 mA

P2-15 – P2-20 Relay outputs

Functions:

P2-15 User relay 1 output function select

Setting range: 0 – 1 – 7

See table P2-15 – P2-20

P2-16 User relay 1 /analog output 1 upper limit

Setting range: 0.0 – 100.0 – 200.0 %

P2-17 User relay 1 / analog output lower limit

Setting range: 0.0 – 200.0 %

Set. Function Explanation0 Drive enabled Relay contacts closed when drive is enabled.1 Drive healthy (digital) Relay contacts closed when drive is healthy (no trip).2 Motor at target speed (digital) Relay contacts closed when output frequency within “ 0.1 Hz of

the target frequency.3 Motor speed ≥ 0 (digital) Relay contacts closed when the output frequency is greater than

”Zero frequency’(0.3 % of base frequency)4 Motor speed ≥ limit (digital) Relay contacts closed when output frequency is greater than the

limit that is set in Parameter “User relay upper limit”. And relay contacts open when less than the limit in “User relay lower limit”

5 Motor current ≥ limit (digital) Relay contacts closed when motor current/torque is greater than the current limit value that is set in Parameter “User relay upper limit”. And relay contacts open when less than the limit in “User relay lower limit”

6 Motor torque ≥ limit (digital)

7 Analog input 2 ≥ limit (digital) Relay contacts closed when second analog input value is greater than the limit that is set in Parameter “User relay upper limit”. And relay contacts open when less than the limit in “User relay lower limit”

8 Hoist (only for P2-18) This parameter will be displayed if P4-12 hoist function is set to 1. The drive now controls the relay contact for hoist mode operation. (Value can’t be changed if P4-12=1)

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8 xplanation of the parametersarameters

P2-18 User relay 2 output function select

Setting range: 0 – 1 – 8

See table P2-15 – P2-20

P2-19 User relay 1 /analog output 1 upper limit

Setting range: 0.0 – 100.0 – 200.0 %

P2-20 User relay 1 / analog output lower limit

Setting range: 0.0 – 200.0 %

P2-21 /22 Display scaling

P2-21 enables the user to scale the data from a selected source to provide a displayedvalue that better represents the controlled process. The source value to be used by thedisplay scaling calculation is defined in P2-22.

If P2-21 has a non-zero value, then a scaled display value becomes visible on the dis-play in addition to motor speed, motor current and motor power. Pressing the <NAVI-GATE> button cycles through the real-time values. A lower case character "c" on theleft-hand side of the display indicates that the scaled display value is being displayed.The scaled display value is calculated by the following equation:

Scaling display value = P2-21 × Scaling source value

P2-21 Display scaling factor

Setting range: -30.000 – 0.000 – 30000

P2-22 Display scaling source

• 0 Motor speed information is used as scaling source data.

• 1 Motor current information is used as scaling source data.

• 2 Second analog input value is used as scaling source data. In this case, the rangeof input data value is from 0 to 4096.

P2-23 Zero speed holding time

Setting range: 0.0 – 0.2 – 60.0 s

This parameter could enable the drive stay at zero speed (0 Hz) for a certain time when-ever drive receives a stop command and reduces the output speed to zero before theoutput signal be completely shut down.

If P2-23=0, the output of the drive will be shut down immediately when output speedreach zero.

If P2-23 not equal to zero, the drive will keep at zero speed for a certain period, whichis specified by P2-23 in seconds, before the output of the drive shutting down. This func-tion usually operates in conjunction with relay output function so that the drive wouldgive out a relay control signal before the drive output is disabled.

P2-24 Switching frequency

Setting range 2 – 16 kHz (drive depending)

Sets the output switching frequency. Higher switching frequencies means less noise de-velopment on the motor but higher losses in the output stage. Maximum output switchingfrequency depends on drive power rating.

The drive reduces the switching frequency on drive temperature automatically.

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8Explanation of the parametersParameters

P2-25 2nd deceler-ation ramp

Setting range: 0.00 – 30.0 s

Deceleration 2nd ramp down time. Selected automatically on mains power loss if P2-38= 2.

Can also be selected by digital inputs, dependent on other parameter settings. When setto "0", drive decelerates as quickly as possible, whilst preventing an over-voltage trip.

P2-26 Flying start enable

When enabled, drive starts from detected rotor speed. Short delay possible if rotor sta-tionary (only available if P4-01 = 0, 1 or 2).

0 / Disabled

1 / Enabled

P2-27 Standby mode

Setting range: 0.0 – 250 s

If P2-27 > 0, drive enters standby mode (disables output) if minimum speed maintainedfor time specified in P2-27. If P2-23 > 0 or P4-12=1, this function is disabled.

P2-28/29 Master/Slave parameters

The drive will use parameterP2-28/29 to scale the speed reference value that has beenreceived from the master in the network system.

This function is especially suitable for those applications in which all drives in the net-work should be synchronized but run at different speeds based on a fixed scaling factor.

For example, if a slave drive set P2-29 to 80 % and P2-28=1 and the master drive of thenetwork runs at 50 Hz, then the slave drive will run at 40 Hz after being enabled.

P2-28 Slave speed scaling control

0 / Disabled

1 / Actual speed = Digital speed x P2-29

2 / Actual speed =(Digital speed x P2-29) + Analog input 1 reference

3 / Actual speed = Digital speed x P2-29 x Analog input 1 reference

P2-29 Slave speed scaling factor

Setting range: -500 – 100 – 500 %

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8 xplanation of the parametersarameters

P2-30 – P2-35 Analog inputs

These parameters allow the user to configure the analog input 1 and 2 to suit the formatof the signal connected to the analog input control terminals. When set to 0...10V, allnegative input voltages will- give zero speed. When set to -10 – 10 V, all negative volt-ages will result in the drive running with a negative speed, where the speed is propor-tional to the magnitude of the input voltage.

P2-30 Analog input 1 format

0 – 10 V, 10 – 0 V / / Unipolar voltage input

10 – 10V / Bipolar voltage input

0 – 20 mA / Current input

t4 – 20 mA, t20-4 mA

"t" indicates the drive will trip if the signal is removed whilst the drive is enabled.r4 –20 mA, 20 – 4 mA

"r" indicates the drive will ramp to P1-02 if the signal is removed whilst the drive is en-abled.

P2-31 Analog input 1 scaling

Setting range: 0 – 100 – 500 %

P2-32 Analog input 1 offset

Setting range: -500 – 0 – 500 %

Sets an offset, as a % of full scale range of input, applied to analog input signal.

3469554699

200

%

100%

50%

10V5V0V

0%

50%

100%

Analog input

Spe

ed

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8Explanation of the parametersParameters

P2-33 Analog input 2 format

0 – 10 V, 10 – 0 V / / Unipolar voltage input

PTC-th / Motor thermistor input

0 – 20 mA / Current input

t4 – 20 mA, t20 – 4 mA

"t" indicates the drive will trip if the signal is removed whilst the drive is enabled.

r4 – 20 mA, 20 – 4 mA

"r" indicates the drive will ramp to P1-02 if the signal is removed whilst the drive is en-abled.PTC-th has to be selected whilst P1-15 is selected to a reaction for external tripto ensure motor thermal protection.

P2-34 Analog input 2 scaling

Setting range: 0 – 100 – 500 %

P2-35 Analog input 2 offset

Setting range: -500 – 0 – 500 %

Sets an offset, as a % of full scale range of input, applied to analog input signal.

P2-36 Start mode select

Following a trip drive will make up to 5 attempts to restart at 20 second intervals. Drivemust be powered down to reset counter.

The number of restart attempts are counted. If drive fails to start on final attempt, drivewill fault and require user to reset fault manually.

Edge-r / Edge requires the run signal to be applied after a trip or a power up before thedrive will run. If the enable signal is present on power up, the drive will not run.

Auto-0 / Auto-run enables whenever a run signal is present (assuming no trip). If the runsignal is present on power up, the drive will run immediately.

Auto-1..Auto-4 / As Auto-0, except for the fact that the drive will attempt to auto restartafter a trip. The number of re-start attempts is given by the number after the "Auto-". Therestart counter is reset after a power down or a reset operation that performed by userthrough pushbuttons.

P2-37 Keypad restart speed

Active only when P1-12 = 1

0 / Following a stop and restart drive will run at minimum speed

1 / Following a stop and restart drive will run at last setpoint speed

2 / Drive remains at current speed while switching to digital pot mode

3 /Following a stop and restart drive will run at Preset Speed 8 (P2-08)

P2-38 Mains loss stop control

Controls behavior of drive in response to loss of mains power supply whilst drive en-abled.

0 / Drive will attempt to continue operating by recovering energy from load motor. Pro-viding mains loss period is short, and sufficient energy can be recovered before drivecontrol electronics power off, drive will automatically restart when mains power returns.

1 / Drive will immediately disable output to motor, allowing load to coast or free wheel.When using this setting with high inertia loads, spin start function (P2-26) may need tobe enabled.2 / Drive will ramp to stop at rate programmed in parameter P2-25 2nd de-celeration ramp time.

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8 xplanation of the parametersarameters

P2-39 Parameter lock

When locked all parameter changes are prevented ("L" will be displayed)

0 / Disabled

1 / Enabled

P2-40 Extended parameter access code definition

Setting range: 0 – 101 – 9999

Access to the extended menu (Parameter group 2,3,4,5) is only permitted when thevalue entered into P1-14 equals that stored in P2-40. In this way, the user may changeto code from the standard value of "101' to any desired value.

8.2.4 Parametergroup 3: PID control (Level 2)P3-01 PID proportional gain

Setting range: 0.1 – 30.0

PID controller proportional gain. Higher values provide a greater change in drive outputfrequency in response to small changes in feedback signal. Too high a value can causeinstability

P3-02 PID integral time constant

Setting range: 0.0 – 1.0 – 30.0

PID controller integral time. Larger values provide a more damped response for systemswhere overall process responds slowly.

P3-03 PID differen-tial time constant

Setting range: 0.00 – 1.00

P3-04 PID operat-ing mode

0 / Direct operation - Motor speed increases with increase in feedback signal

1 / Inverse Operation - Motor speed decreases with increase in feedback signal.

P3-05 PID refer-ence select

Selects source for PID Reference / Setpoint

0 / P3-06 used

1 / Analog input 1 used

2 / Analog input 2 used

P3-06 PID digital reference

Setting range: 0.0 – 100.0 %

Sets preset digital PID reference / setpoint.

P3-07 PID control-ler high limit

Setting range: P3-08 – 100.0 %

Defines the minimum output value of the PID controller. The lower limit value is calcu-lated as:

Lower Limit = P3-08 × P1-01

P3-08 PID control-ler low limit

Setting range: 0.0 % – P3-07 %

PID controller output high limit. This parameter defines the maximum output value of thePID controller. The upper limit value is calculated as:

Upper Limit = P3-07 × P1-01

A value of 100 % gives the maximum speed limit as is defined in P1-01

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8Explanation of the parametersParameters

P3-09 PID output control

0 / Digital outputs limit - PID output range limited by P3-07 & P3-08

1 / Analog input 1 variable upper limit - PID maximum output limited by the signal appliedto Analog input 1.

2 / Analog input 1 variable lower limit - PID minimum output limited by the signal appliedto Analog input 1.

3 / PID output + Analog input 1 - PID output is added to the speed reference applied toAnalog input 1.

P3-10 PID feedback select

Selects the source of PID feedback signal

0 / Analog input 2

1 / Analog input 1

P3-11 PID error to enable ramps

Setting range: 0.0 – 25.0 %

Defines a threshold PID error level. If the difference between setpoint and feedback val-ues is less than set threshold, internal ramp times of drive are disabled.

Where a greater PID error exists, ramp times are enabled to limit rate of change of motorspeed on large PID errors and react quickly to small errors.

P3-12 PID feed-back value display scaling factor

Setting range: 0.000 – 50.000

Applies a scaling factor to displayed PID feedback, allowing user to display actual signallevel from a transducer, e.g. 0 - 10 Bar etcScaling display value = P3-12 × PID output

P3-13 PID feed-back wake-up level

Setting range: 0.0 – 100.0 %

Sets a programmable level. If drive enters standby mode or whilst operating under PIDcontrol, selected feedback signal must fall below this threshold before drive will returnto normal operation

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8 xplanation of the parametersarameters

8.2.5 Parametergroup 4: Motor control (Level 2)P4-01 Control mode

0/ VFC Speed control

Vector speed control mode for Induction motors with estimated rotor speed feedbackcontrol. Field orientated control algorithms are used for motor speed control. Since es-timated rotor speed is used to internally close the speed loop, this mode of operationeffectively gives closed loop performance without a physical encoder. With a correctlytuned speed controller, steady state speed regulation is typically better then 1 %. AnAuto-tune (P4-02) should be carried out prior to first operation to ensure best control.

1/ VFC Torque control

Instead of controlling the motor speed, the motor output torque is controlled directly. Inthis mode of operation, the output speed is not controlled but will change dependent onload. The maximum speed is limited by P1-01. This mode is often used for winding ap-plications, where a constant torque is required to maintain tension in a cable. An Auto-tune (P4-02) should be carried out prior to first operation to ensure best control.

2/ Speed control - Enhanced V/F

This mode is effectively voltage control, where applied motor voltage is controlled ratherthan the torque producing current. The magnetising current is controlled directly, so thatvoltage boost is not required. The Voltage characteristic can be selected using the en-ergy saving function in parameter (P1-06). The default setting gives a linear character-istic, where voltage is proportional to frequency, noting that the magnetising current isindependently controlled. By enable the energy saving function it selects a reduced volt-age characteristic, where applied motor voltage is reduced at lower speeds. This is typ-ically used for fan applications to save energy consumption. The Auto-tune functionshould also be called in this mode of operation. In this case, the tuning process is lesscomplex and completes very quickly.

3/ PM Motor speed control

Speed control for Permanent magnet motors. Same properties as VFC speed control

4/ PM Motor torque control

Torque control for Permanent magnet motors. Same properties as VFC torque control

5/ PM Motor position control

Position control for Permanent magnet motors. Speed and torque reference is providedby processdata in Motion Protocol (P1-12=8). An encoder is required.

P4-02 Auto tune 0 / Disable

1 / Enable

When set to "1", drive immediately carries out a static (non-rotating) motor parametermeasurement operation to configure motor parameters. P1-07, P1-08 and P1-09 mustbe set correctly according to motor nameplate before enabling this function.

Auto-tune runs automatically on first enable after parameter default operation and P1-08 have been changed. No hardware enable required.

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8Explanation of the parametersParameters

P4-03 Speed con-troller Proportional gain

Setting range: 0.1 – 50 – 400 %

Sets proportional gain value for speed controller.Higher values provide better output fre-quency regulation and response. Too high a value can cause instability or even overcur-rent trips. For applications requiring best possible performance:value should be ad-justed to suit connected load by gradually increasing value and monitoring actual outputspeed of load. This process should be continued until required dynamic behaviourachieved with little or no overshoot, where output speed exceeds setpoint.

In general, higher friction loads can tolerate higher values of proportional gain. High in-ertia, low friction loads may require gain to be reduced.

P4-04 Speed con-troller Integral time constant

Setting range: 0.001 – 0.100 – 1.000 s

Sets integral time for speed controller. Smaller values provide a faster response in re-action to motor load changes, at risk of introducing instability. For best dynamic perfor-mance, value should be adjusted to suit connected load.

P4-05 Motor power factor

Setting range: 0.50 – 0.99 (drive depending)

Motor nameplate power factor, which must be entered for vector operation (P4-01 = 0or 1).

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8 xplanation of the parametersarameters

P4-06 – P4-09 Motor torque settings

Use this parameters to adjust the motor torque limits.

P4-06 Torque con-trol reference

When operating in vector mode or PM mode

(P4-01 ≠ 2), this parameter selects source of torque reference / limit.

0 / Maximum torque limit

Fixed Preset torque limit. Torque reference is preset by P4-07. If this option is used, themotor output torque reference value will be fixed by the percentage value of motor ratedtorque set in parameter P4-07. The motor rated torque is determined automatically bythe auto-tune.

1/ Analog Input 1

2 / Analog input 2

Analog input torque limit. If a variable torque reference is required, the analog input canbe used as the torque reference. In this case, the reference value could be changed inreal time in proportion to the analog input signal. The correct analog input signal formatshould be set in parameter P2-30/P2-33. The input signal format must be unipolar. Bi-polar references are not supported for a torque limit. The scaling depends on the valueset in P4-07. (0 – 10 V = 0 – P4-07 % torque).

Analog Input 2

3/ Modbus Communication

Modbus torque reference. When this option is selected, the motor torque limit is givenby the Modbus master. The value can range from 0 % to 200 %.

4/ Master drive

Master drive in a Master/Slave network provides the torque reference.

5/ PID output

The output of the PID controller provides the torque reference.

3473010955

P4-08

P4-08

P4-09 P4-07

P4-08

P4-08

P4-09P4-07

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8Explanation of the parametersParameters

P04-07 Maximum motoring torque limit

Setting range: P4-08 – 200 – 500 %

If P4-01 = 1 or 4 and P4-06 = 0, sets preset torque reference. If P4-01 = 0 or 3, setsmaximum torque limit. The torque limit is based on the output current set by parameterP1-08.

P4-08 Minimum torque limit

Setting range: 0.0 – P4-07 %

Sets minimum torque limit. Drive will attempt to maintain this torque on motor at all timesduring operation.

NOTE: This parameter should be used with extreme care because drive output fre-quency will increase (to achieve torque level) and may exceed selected speed refer-ence.

P4-09 Maximum regenerating torque limit

Setting range: P4-08 – 200 – 500 %

Defines the control current limit when in regenerating mode. The value in this parameterrepresents the percentage value of motor rated current that is defined in P1-08. The cur-rent limit that defined in this parameter will override the normal torque producing currentlimit when motor goes into regeneration mode. Too high a value may cause big motorcurrent distortion and the motor may behavior aggressively once motor goes into regen-eration mode. The output torque of the motor may reduce during regeneration if thevalue in this parameter too small

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8 xplanation of the parametersarameters

P4-10/11 V/F characteristing settings

The Voltage - Frequency characteristic defines the level of voltage that is applied to themotor at any given frequency. Parameters P4-10 and P4-11 allows the user to modifythe V/F characteristic should this be required.

Parameter P4-10 can be set to any frequency between 0 and the base frequency (P1-09) and represents the frequency at which the percentage adjustment level set in P4-11is applied. Note that this function is only active when P4-01=2

P4-10 V/F charac-teristic adjustment frequency

Setting range: 0.0 – 100.0 % of P1-09

P4-11 V/F charac-teristic adjustment voltage

Setting range: 0.0 – 100.0 % of P1-07

P4-12 Motor brake control

Enables the global brake control of the drive.

Parameters P4-13 to P4-16 become active.

Relay contact 2 is set to hoist and the function cannot be changed.

0 / Disabled /

1 / Enabled

3473009035

[1] Normal V/F characteristic [2] Adjusted V/F characteristic[3] Adjusted V/F characteristic

[2][3]

[5]

P1-07 = 230 V

P4-11 = 180

P4-11 = 60

P4-10 = 25 Hz P1-09 = 50 Hz

V

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[1]

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8Explanation of the parametersParameters

P4-13 Motor brake release time

Setting range: 0.0 – 0.2 – 5.0 s

This parameter determines how long the motor will remain at preset speed 7 speed aftersuccessful premagnetisation of the motor and brake has to release.

P4-14 Motor brake apply time

Setting range: 0.0 – 5.0 s

This parameter can be used to set the time required for the mechanical brake to apply.This parameter prevents a sagging of the drive especially for hoists.

P4-15 Torque threshold for brake release

Setting range: 0.0 – 1.0 – 200 %

Sets the torque level in % of maximum available that must be generated prior to releaseof the motor brake.

This is used to ensure that the motor is connected and the torque generated to preventthe load dropping when the brake is released. In V/F mode the torque prove is not active.This is only recommended for horizontal moving applications.

P4-16 Torque threshold timeout

Setting range: 0.0 – 5.0 s

sets the time for which following a start command, the drive will attempt to apply enoughtorque to the motor to reach the torque threshold for brake release level set in ParameterP4-15. Should the torque level not be reached within the set time, due to a mechanicalor other fault, the drive will trip.

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8 xplanation of the parametersarameters

8.2.6 Parametergroup 5: Fieldbus communications (Level 2)P5-01 Drives address

Setting range: 1 – 63

Sets the global drive address for Sbus, Modbus, Filedbus and Master/Slave

P5-02 SBus baudrate

Sets the Sbus baudrate. This parameter must be set to operate for SEW gateways orMoviPLC.

125 / 125 kBaud

250 / 250 kBaud

500 / 500 kBaud

1000 / 1000 kBaud

P5-03 Modbus baudrate

Sets the expected Modbus baudrate

9.6 / 9600 baud

19.2 / 19200 baud

38.4 / 38400 baud

57.6 / 57600 baud

115.2 / 115200 baud

P5-04 Modbus data format

Sets the expected Modbus data format

n-1 / No parity, 1 stop bit

n-2 / No parity, 2 stop bits

O-1 / Odd parity, 1 stop bit

E-1 / Even parity, 1 stop bit

P5-05 Communication loss action

Controls behavior of drive following a loss of communications after timeout time set inP5-06.

0 / Trip and coast to stop

1 / Ramp to stop and trip

2 / Ramp to stop (no trip)

3 / Preset speed 8

P5-06 Communication loss timeout

Setting range: 0.0 – 1.0 – 5.0 s

Sets the time in seconds after the drive will apply action as set in P5-05. If set to 0.0sthe drive will hold actual speed even if the communication is lost.

P5-07 Ramps set via SBus

Allow the user to enable the internal or external ramp control. If enabled the drive willfollow the external ramps sent by Movilink processdata (PO3).

0 / Disabled

1 / Enabled

P5-08 Sync. Cyclic period

Setting range: 0, 5 – 10 ms

Sets the period of the sync message of the MoviPLC. This value must be equal to thevalue as set in the MoviPLC. If P5-08=0 the drive doesn't care about the sync.

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8Explanation of the parametersParameters

8.2.7 P1-15 Digital inputs function select

The functionality of the digital inputs within the MOVITRAC® LTP-B is user programma-ble, allowing the user to select the functions required for the application.

The following tables define the functions of the digital inputs depending on the value ofparameter P1-12 (Terminal / Keypad / SBus control) and P1-15 (Digital input functionselect).

Frequency inverter mode

P1-15 Digital input 1 Digital input 2 Digital input 3 Analog input 1 Analog input 2 Comments / Preset value

1 O: Stop (Disable)C: Run (Enable)

O: ForwardC: Reverse

O: Selected speed refC: Preset speed 1, 2

Analog 1 speed ref

O: Preset speed 1C: Preset speed 2

2 O: Stop (Disable)C: Run (Enable)

O: ForwardC: Reverse

Open Open Open Preset speed 1

Closed Open Open Preset speed 2

Open Closed Open Preset speed 3

Closed Closed Open Preset speed 4

Open Open Closed Preset speed 5

Closed Open Closed Preset speed 6

Open Closed Closed Preset speed 7

Closed Closed Closed Preset speed 8

3 O: Stop (Disable)C: Run (Enable)

O: ForwardC: Reverse

O: Selected speed refC: Preset speed 1

Analog 1 speed ref

Analog torque ref –

4 O: Stop (Disable)C: Run (Enable)

O: ForwardC: Reverse

O: Selected speed refC: Preset speed 1

Analog 1 speed ref

O: Decel ramp 1C: Decel ramp 2

5 O: Stop (Disable)C: Run (Enable)

O: ForwardC: Reverse

O: Selected speed refC: Analog input 2

Analog 1 speed ref

Analog 2 speed ref –

6 O: Stop (Disable)C: Run (Enable)

O: ForwardC: Reverse

O: Selected speed refC: Preset speed 1

Analog 1 speed ref

External trip1)

O: trip C: Run

7 O: Stop (Disable)C: Run (Enable)

O: ForwardC: Reverse

Open Open External trip1)

O: trip C: Run

Preset speed 1

Closed Open Preset speed 2

Open Closed Preset speed 3

Closed Closed Preset speed 4

8 O: Stop (Disable)C: Run (Enable)

O: ForwardC: Reverse

Open Open O: Decel ramp 1C: Decel ramp 2

Preset speed 1

Closed Open Preset speed 2

Open Closed Preset speed 3

Closed Closed Preset speed 4

9 O: Stop (Disable)C: Run (Enable)

O: ForwardC: Reverse

Open Open O: Selected speed refC: Preset speed 1 – 4

Preset speed 1

Closed Open Preset speed 2

Open Closed Preset speed 3

Closed Closed Preset speed 4

10 O: Stop (Disable)C: Run (Enable)

O: ForwardC: Reverse

Normally Open (N.O.)Close to increase speed

Normally Open (N.O.)Close to reduce speed

O: Selected speed refC: Preset speed 1

11 O: Stop (Disable)C: Run forward

O: Stop (Disable)C: Run reverse

O: Selected speed refC: Preset speed 1, 2

Analog 1 speed ref

O: Preset speed 1C: Preset speed 2

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8 xplanation of the parametersarameters

INFORMATION• Parameter P1-15 also has the entry "0", which represents the same function as the

last selected entry. When using a controller from SEW-EURODRIVE the input func-tions may vary according to the drive’s internal selections.

12 O: Stop (Disable)C: Run forward

O: Stop (Disable)C: Run reverse

Open Open Open Preset speed 1

Closed Open Open Preset speed 2

Open Closed Open Preset speed 3

Closed Closed Open Preset speed 4

Open Open Closed Preset speed 5

Closed Open Closed Preset speed 6

Open Closed Closed Preset speed 7

Closed Closed Closed Preset speed 8

13 O: Stop (Disable)C: Run forward

O: Stop (Disable)C: Run reverse

O: Selected speed refC: Preset speed 1

Analog 1 speed ref

Analog torque ref –

14 O: Stop (Disable)C: Run forward

O: Stop (Disable)C: Run reverse

O: Selected speed refC: Preset speed 1

Analog 1 speed ref

O: Decel ramp 1C: Decel ramp 2

15 O: Stop (Disable)C: Run forward

O: Stop (Disable)C: Run reverse

O: Selected speed refC: Analog input 2

Analog 1 speed ref

Analog 2 speed ref –

16 O: Stop (Disable)C: Run forward

O: Stop (Disable)C: Run reverse

O: Selected speed refC: Preset speed 1

Analog 1 speed ref

External trip1)

O: trip C: Run

17 O: Stop (Disable)C: Run forward

O: Stop (Disable)C: Run reverse

Open Open External trip1)

O: trip C: Run

Preset speed 1

Closed Open Preset speed 2

Open Closed Preset speed 3

Closed Closed Preset speed 4

18 O: Stop (Disable)C: Run forward

O: Stop (Disable)C: Run reverse

Open Open O: Decel ramp 1C: Decel ramp 2

Preset speed 1

Closed Open Preset speed 2

Open Closed Preset speed 3

Closed Closed Preset speed 4

19 O: Stop (Disable)C: Run forward

O: Stop (Disable)C: Run reverse

Open Open O: Selected speed refC: Preset speed 1 – 4

Preset speed 1

Closed Open Preset speed 2

Open Closed Preset speed 3

Closed Closed Preset speed 4

20 O: Stop (Disable)C: Run forward

O: Stop (Disable)C: Run reverse

Normally Open (N.O.)Close to increase speed

Normally Open (N.O.)Close to reduce speed

O: Selected speed refC: Preset speed 1

Used for motor potentiometer operation

21 O: Stop (Disable)C: Run forward (latch)

O: Stop (Disable)C: Run

O: Stop (Disable)C: Run reverse (latch)

Analog 1 speed ref

O: Selected speed refC: Preset speed 1

Function acti-vated when P1-12 = 0

1) External trip is defined in parameter P2-33.

P1-15 Digital input 1 Digital input 2 Digital input 3 Analog input 1 Analog input 2 Comments / Preset value

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8Explanation of the parametersParameters

Speed reference selection

The "Selected speed reference" referred to in the previous chapter is determined by thevalue set in P1-12 (Terminal / keypad / SBus control).

P1-12 (Terminal / keypad / SBus control) Digital input 2

0 Terminal mode Analog input 1

1 Keypad mode (uni-directional) Digital potentiometer

2 Keypad mode (bi-directional) Digital potentiometer

3 User PID mode PID controller output

4 Slave mode Speed reference via Optibus

5 SBus (MOVILINK® protocol) Speed reference via SBus

6 CANbus Speed reference via CANbus

7 Modbus Speed reference via Modbus

8 SBus (MOVI-PLC® Motion Protocol) Speed reference via SBus

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74

8 xplanation of the parametersarameters

8.2.8 Hoist function

To enable the hoist function P4-12 (motor brake control) must be set to "1". When thehoist function is enabled all necessary parameters to operate in hoist mode are activatedand locked. These parameters are:

• Relay contact

• Brake release delay

• Brake apply delay

• Preset speed 7 becomes brake release speed

• Preset speed 8 becomes brake apply speed

• Brake chopper enabled

INFORMATION• A single-phase motor phase failure cannot always be detected reliably.

• The correct performance of the hoist function requires the motor brake to becontrolled via the drive.

General settings • Clockwise corresponds to the direction upwards.

• Counterclockwise corresponds to the direction downwards.

• For a change in direction the motor has to be stopped (brake closed). Disable mustbe applied before the direction can be changed.

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8Explanation of the parametersParameters

Hoist mode opera-tion

The following diagram shows the operation in hoist mode.

3210688907

t1 Drive enable signalt1-t2 Motor ramps up to brake release speed (preset speed 7)t2 Brake release speed reachedt2-t3 Torque threhold (P4-15) is proofed. If the torque level is not reached with the torque threshold time

(P4-16) the drive trips.t3 Relay openst3-t4 Brake release within brake release time (P4-13)t4 Brake is open and drive will ramp up to target speedt4-t5 Normal operationt5 Drive disable signalt5-t6 Drive ramps down to brake apply speed (preset speed 8)t6 Relay closest5-t6 Brake closes within brake apply time (P4-14)t7 Brake is closed and drive is in stop mode

Target speed

Brake apply speed

Enable (DI01)

Mechanical brake

Relay 2 contact

Brake release speed

t1 t 2 t4 t 6t 5 t7t 3

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76

9 odbus controloftware

9 Software9.1 Modbus control9.1.1 Specification

The following table highlights the specification for the Modbus RTU implementation inMOVITRAC® LTP-B.

9.1.2 Memory map

Protocol Modbus RTU

Error check CRC

Baud rate 9600 bps, 19200 bps, 38400 bps, 57600 bps, 115200 bps (default)

Data format 1 start bit, 8 data bits, 1 stop bit, no parity

Physical signal RS-485 (2-wire)

User interface RJ45

Register Upper byte Lower byte Command Type

1 Command – 03, 06 Read / Write

2 Speed reference – 03, 06 Read / Write

3 Torque reference – 03, 06 Read / Write

4 Acceleration ramp time Deceleration ramp time 03, 06 Read / Write

5 Reserved – 03 Read only

6 Error code Drive status 03 Read only

7 Motor speed – 03 Read only

8 Motor current – 03 Read only

9 Motor torque – 03 Read only

10 Motor power – 03 Read only

11 Digital input status – 03 Read only

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9Modbus controSoftware

9.1.3 Register description

Type Register number

Register title Description

Read / Write 1 Drive command 0: CMD Drive command setup:00: stop01: start10: reset

1: CMD

2: 2nd 2nd deceleration ramp select flag

3 – 15: Reserved Reserved

2 Speed reference setup This register holds the speed reference value to 1 decimal place (200 = 20.0 Hz). The maximum speed reference value is limited by P1-01.

3 Torque reference setup This register holds the torque reference to 1 decimal place (450 = 45.0 %). The data range is from 0 (0 %) to 2000 (200.0 %).This torque reference is only active when P4-06 = 3 and the drive is in vector control mode.

4 Acceleration / decelera-tion ramp setup

Low byte: Acceleration ramp timeHigh byte: Deceleration ramp time(Range: 0 – 255)

-0M-version

Controls acceleration and deceleration time simultaneously.(Range: 0 – 6000)

-00-version

Ramp time in seconds × 10 (e.g. 100 = 10.0 s)

Read only 6 Drive status and error code

High byte gives the drive error code (valid when the drive is tripped).Low byte gives the drive status:0: drive stopped 1: drive running 2: drive tripped

7 Motor speed information This register gives motor speed information. The data is in Hz and to 1 decimal place (e.g. 234 = 23.4 Hz).

8 Motor current This register gives motor current information. The data is in Amps to 1 decimal place (e.g. 87 = 8.7 A).

9 Motor torque This register gives motor output torque information. It is a percentage value as 100.0 % equals motor rated torque. The data value is stated to 1 decimal place.

10 Motor power This register gives motor power information and the data is stated to 2 decimal places (e.g. 124 = 1.24 kW / HP). The data unit depends on the drive type.

11 Digital input status The value in this register represents the drive terminal digital input status (digital input 1 – 4). The lowest bit indicates digital input status 1.

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9 odbus controloftware

9.1.4 Internal values

For some speed related parameters the drive uses an internal value instead of the actualspeed in Hz in order to increase the resolution. In order to set these speed relatedparameters correctly, the internal value must be used instead of the display value.

Speed Internal = Speed in Hz × Factor

Dataflow example Modbus RTU read data from register 6:

Please note that the start address for register 6 is "5".

When P1-09 ≤ 100 Hz Factor = 60 e.g. 30.5 Hz = 1830

When P1-09 is 101 – 199 Hz Factor = 30 e.g. 30.5 Hz = 915

When P1-09 ≥ 200 Hz Factor = 15 e.g. 250 Hz = 3750

Request [01]Drive address

[03]Command

[00] [05]Register start address

[00] [01]Number of registers

[94] [0B]Checksum

Reply [01]Drive address

[03]Command

[02]Number of data bytes

[00] [00]Data

[B8] [44]Checksum

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10ConformanceTechnical Data MOVITRAC® LTP-B

10 Technical Data MOVITRAC® LTP-B10.1 Conformance

All products conform to the following international standards:

• CE marked for low voltage directive

• IEC 664-1 Insulation coordination within low voltage systems

• UL 508C Power conversion equipment

• EN 61800-3 Adjustable speed electrical power drive systems – Part 3

• EN 61000-6 / -2, -3, -4 Generic immunity / Emission standards (EMC)

• Enclosure protection level according to NEMA 250, EN 60529

• Flammability rating according to UL 94

• C-Tick

• cUL

10.2 Environmental

Operational ambient temperature range –10 °C to +50 °C at default PWM frequency (IP20)–10 °C to +40 °C at default PWM frequency (IP55, NEMA 12k / IP66, NEMA 4X)

Maximum ambient temperature derating 4 % / °C up to 55 °C for IP20 drives4 % / °C up to 45 °C for IP55 / IP66 drives

Storage ambient temperature range –40 °C to +60 °C

Maximum altitude for rated operation 1000 m

Derating above 1000 m 1 % / 100 m to max. 2000 m

Maximum relative humidity 95 % (non-condensing)

Protection rating of standard drive housing IP20

Higher protection rating of drive enclosure IP55, NEMA 12 k / IP66, NEMA 4X

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10 utput power and current ratingsechnical Data MOVITRAC® LTP-B

10.3 Output power and current ratings10.3.1 1-phase system AC 230 V for 3-phase AC 230 V motors

MOVITRAC® LTP-B – EMC filter class B

IP20 Standard with filter1)

1) Unit for Europe, Australia & New Zealand

Type MC LTP B... 0008-2B1-4-00 0015-2B1-4-00 0022-2B1-4-00

Part number 18251382 18251528 18251641

IP55 / NEMA 12 housing with filter

Type MC LTP B... 0008-2B1-4-10 0015-2B1-4-10 0022-2B1-4-10

Part number 18251390 18251536 18251668

IP55 / NEMA 12 housing with switch and filter

Type MC LTP B... 0008-2B1-4-20 0015-2B1-4-20 0022-2B1-4-20

Part number 18251404 18251544 18251676

INPUT

Supply voltage Vmains 1 × AC 200 – 240 V ± 10 %

Supply frequency fmains 50 / 60 Hz ± 5 %

Supply fuse rating A 16 20 32 (35)2)

2) Recommended value for UL compliance

Nominal input current A 10.5 16.2 23.8

OUTPUT

Recommended motor power kW 0.75 1.5 2.2

hp 1.0 2.0 3

Output voltage Vmotor 3 × 20 – 250 V

Output current A 4.3 7 10.5

Motor cable size Cu 75C mm2 1.5

AWG 16

Max. motor cable length Shieldedm

100

Unshielded 150

GENERAL

Size 2

Heat loss at nominal output power W 45 66

Min. braking resistor value Ω 47

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10Output power and current ratingsTechnical Data MOVITRAC® LTP-B

10.3.2 3-phase system AC 230 V for 3-phase AC 230 V motorsSizes 2 & 3

MOVITRAC® LTP-B – EMC filter class A

IP20 Stan-dard with fil-ter1)

Type MC LTP B...

0008-2A3-4-00

0015-2A3-4-00

0022-2A3-4-00

0030-2A3-4-00

0040-2A3-4-00

0055-2A3-4-00

Part number 18251358 18251471 18251617 18251722 18251765 18251846

IP55 /NEMA 12

housing with filter1)

Type MC LTP B...

0008-2A3-4-10

0015-2A3-4-10

0022-2A3-4-10

0030-2A3-4-10

0040-2A3-4-10

0055-2A3-4-10

Part number 18251366 18251498 18251625 18251730 18251773 18251854

IP55 /NEMA 12

housing with switch and filter1)

Type MC LTP B...

0008-2A3-4-20

0015-2A3-4-20

0022-2A3-4-20

0030-2A3-4-20

0040-2A3-4-20

0055-2A3-4-20

Part number 18251374 18251501 18251633 18251749 18251781 18251862

INPUT

Supply voltage Vmains 3 × AC 200 – 240 V ± 10 %

Supply frequency fmains 50 / 60 Hz ± 5 %

Supply fuse rating A 10 10 16 32 (35)2) 50

Nominal input current A 5.7 8.4 13.1 16.1 20.7 25

OUTPUT

Recommended motor power

kW 0.75 1.5 2.2 3 4 5.5

hp 1.0 2.0 3.0 4.0 5.4 7.4

Output voltage Vmotor 3 × 20 – 250 V

Output current A 4.3 7 10.5 14 18 24

Motor cable size Cu 75C mm2 1.5 2.5 4

AWG 16 12 10

Max. motor cable length

Shieldedm

100

Unshielded 150

GENERAL

Size 2 3

Heat loss at nominal output power W 45 66 90 120 165

Min. braking resistor value

Ω 47

1) Unit for Europe, Australia & New Zealand2) Recommended value for UL compliance

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10.3.3 3-phase system AC 400 V for 3-phase AC 400 V motorsSizes 2 & 3

MOVITRAC® LTP-B – EMC filter class A

IP20-Standard1)

Type MC LTP B...

0008-5A3-4-00

0015-5A3-4-00

0022-5A3-4-00

0040-5A3-4-00

0055-5A3-4-00

0075-5A3-4-00

0110-5A3-4-00

Part number 18251412 18251552 18251684 18251803 18251870 18251927 18251986

IP55 / NEMA 12 housing1)

Type MC LTP B...

0008-5A3-4-10

0015-5A3-4-10

0022-5A3-4-10

0040-5A3-4-10

0055-5A3-4-10

0075-5A3-4-10

0110-5A3-4-10

Part number 18251420 18251560 18251692 18251811 18251889 18251935 18251994

IP55 / NEMA 12 with switch1)

Type MC LTP B...

0008-5A3-4-20

0015-5A3-4-20

0022-5A3-4-20

0040-5A3-4-20

0055-5A3-4-20

0075-5A3-4-20

0110-5A3-4-20

Part number 18251439 18251579 18251706 18251838 18251897 18251943 18252001

INPUT

Supply voltage Vmains 3 × AC 380 – 480 V ± 10 %

Supply frequency fmains 50 / 60 Hz ± 5 %

Supply fuse rating A 6 10 16 16 (15)2) 20 25 32 (35)2)

Nominal input current A 3.1 4.8 7.2 10.8 17.6 22.1 28.2

OUTPUT

Recommended motor power

kW 0.75 1.5 2.2 4 5.5 7.5 11

hp 1 2 3 5.4 7.4 10.1 14.8

Output voltage Vmotor 3 × 20 – 250 V

Output current A 2.2 4.1 5.8 9.5 14 18 24

Motor cable size Cu 75C

mm2 1.5 2.5 4

AWG 16 12 10

Max. motor cable length

Shielded

m

100

Unshielded150

GENERAL

Size 2 3

Heat loss at nominal output power W 22 45 66 120 165 225 330

Min. braking resistor value

Ω 100 22

1) Unit for Europe, Australia & New Zealand2) Recommended value for UL compliance

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11Address List

11 Address List

Germany

HeadquartersProductionSales

Bruchsal SEW-EURODRIVE GmbH & Co KGErnst-Blickle-Straße 42 D-76646 BruchsalP.O. BoxPostfach 3023 • D-76642 Bruchsal

Tel. +49 7251 75-0Fax +49 7251 75-1970http://[email protected]

Production / Indus-trial Gears

Bruchsal SEW-EURODRIVE GmbH & Co KGChristian-Pähr-Str.10D-76646 Bruchsal

Tel. +49 7251 75-0Fax +49 7251 75-2970

Service Compe-tence Center

Central SEW-EURODRIVE GmbH & Co KGErnst-Blickle-Straße 1 D-76676 Graben-Neudorf

Tel. +49 7251 75-1710Fax +49 7251 [email protected]

North SEW-EURODRIVE GmbH & Co KGAlte Ricklinger Straße 40-42 D-30823 Garbsen (near Hannover)

Tel. +49 5137 8798-30Fax +49 5137 [email protected]

East SEW-EURODRIVE GmbH & Co KGDänkritzer Weg 1D-08393 Meerane (near Zwickau)

Tel. +49 3764 7606-0Fax +49 3764 [email protected]

South SEW-EURODRIVE GmbH & Co KGDomagkstraße 5D-85551 Kirchheim (near München)

Tel. +49 89 909552-10Fax +49 89 [email protected]

West SEW-EURODRIVE GmbH & Co KGSiemensstraße 1D-40764 Langenfeld (near Düsseldorf)

Tel. +49 2173 8507-30Fax +49 2173 [email protected]

Electronics SEW-EURODRIVE GmbH & Co KGErnst-Blickle-Straße 42 D-76646 Bruchsal

Tel. +49 7251 75-1780Fax +49 7251 [email protected]

Drive Service Hotline / 24 Hour Service +49 180 5 SEWHELP+49 180 5 7394357

Additional addresses for service in Germany provided on request!

France

ProductionSalesService

Haguenau SEW-USOCOME 48-54 route de Soufflenheim B. P. 20185F-67506 Haguenau Cedex

Tel. +33 3 88 73 67 00 Fax +33 3 88 73 66 00http://[email protected]

Production Forbach SEW-USOCOME Zone industrielle Technopôle Forbach SudB. P. 30269F-57604 Forbach Cedex

Tel. +33 3 87 29 38 00

AssemblySalesService

Bordeaux SEW-USOCOME Parc d'activités de Magellan62 avenue de Magellan - B. P. 182F-33607 Pessac Cedex

Tel. +33 5 57 26 39 00Fax +33 5 57 26 39 09

Lyon SEW-USOCOME Parc d'affaires RooseveltRue Jacques TatiF-69120 Vaulx en Velin

Tel. +33 4 72 15 37 00Fax +33 4 72 15 37 15

Nantes SEW-USOCOME Parc d’activités de la forêt4 rue des FontenellesF-44140 Le Bignon

Tel. +33 2 40 78 42 00Fax +33 2 40 78 42 20

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11 ddress List

Paris SEW-USOCOME Zone industrielle 2 rue Denis Papin F-77390 Verneuil I'Etang

Tel. +33 1 64 42 40 80Fax +33 1 64 42 40 88

Additional addresses for service in France provided on request!

Algeria

Sales Alger REDUCOM Sarl 16, rue des Frères ZaghnouneBellevue16200 El Harrach Alger

Tel. +213 21 8214-91Fax +213 21 [email protected]://www.reducom-dz.com

Argentina

AssemblySalesService

Buenos Aires SEW EURODRIVE ARGENTINA S.A.Centro Industrial Garin, Lote 35Ruta Panamericana Km 37,51619 Garin

Tel. +54 3327 4572-84Fax +54 3327 [email protected]://www.sew-eurodrive.com.ar

Australia

AssemblySalesService

Melbourne SEW-EURODRIVE PTY. LTD.27 Beverage DriveTullamarine, Victoria 3043

Tel. +61 3 9933-1000Fax +61 3 9933-1003http://[email protected]

Sydney SEW-EURODRIVE PTY. LTD.9, Sleigh Place, Wetherill Park New South Wales, 2164

Tel. +61 2 9725-9900Fax +61 2 [email protected]

Austria

AssemblySalesService

Wien SEW-EURODRIVE Ges.m.b.H. Richard-Strauss-Strasse 24A-1230 Wien

Tel. +43 1 617 55 00-0Fax +43 1 617 55 00-30http://[email protected]

Belarus

Sales Minsk SEW-EURODRIVE BYRybalkoStr. 26BY-220033 Minsk

Tel.+375 17 298 47 56 / 298 47 58Fax +375 17 298 47 54http://[email protected]

Belgium

AssemblySalesService

Brussels SEW Caron-VectorResearch park HaasrodeEvenementenlaan 7BE-3001 Leuven

Tel. +32 16 386-311Fax +32 16 386-336http://[email protected]

Service Compe-tence Center

Industrial Gears SEW Caron-VectorRue de Parc Industriel, 31BE-6900 Marche-en-Famenne

Tel. +32 84 219-878Fax +32 84 219-879http://[email protected]

Antwerp SEW Caron-VectorGlasstraat, 19BE-2170 Merksem

Tel. +32 3 64 19 333Fax +32 3 64 19 336http://[email protected]

Brazil

ProductionSalesService

Sao Paulo SEW-EURODRIVE Brasil Ltda.Avenida Amâncio Gaiolli, 152 - Rodovia Presi-dente Dutra Km 208Guarulhos - 07251-250 - SPSAT - SEW ATENDE - 0800 7700496

Tel. +55 11 2489-9133Fax +55 11 2480-3328http://[email protected]

France

A

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11Address List

Bulgaria

Sales Sofia BEVER-DRIVE GmbHBogdanovetz Str.1BG-1606 Sofia

Tel. +359 2 9151160Fax +359 2 [email protected]

Cameroon

Sales Douala Electro-ServicesRue Drouot AkwaB.P. 2024Douala

Tel. +237 33 431137Fax +237 33 [email protected]

Canada

AssemblySalesService

Toronto SEW-EURODRIVE CO. OF CANADA LTD. 210 Walker Drive Bramalea, ON L6T 3W1

Tel. +1 905 791-1553Fax +1 905 791-2999http://[email protected]

Vancouver SEW-EURODRIVE CO. OF CANADA LTD.Tilbury Industrial Park7188 Honeyman Street Delta, BC V4G 1G1

Tel. +1 604 946-5535Fax +1 604 [email protected]

Montreal SEW-EURODRIVE CO. OF CANADA LTD.2555 Rue Leger Lasalle, PQ H8N 2V9

Tel. +1 514 367-1124Fax +1 514 [email protected]

Additional addresses for service in Canada provided on request!

Chile

AssemblySalesService

Santiago de Chile

SEW-EURODRIVE CHILE LTDA.Las Encinas 1295Parque Industrial Valle GrandeLAMPARCH-Santiago de ChileP.O. BoxCasilla 23 Correo Quilicura - Santiago - Chile

Tel. +56 2 75770-00Fax +56 2 75770-01http://[email protected]

China

ProductionAssemblySalesService

Tianjin SEW-EURODRIVE (Tianjin) Co., Ltd.No. 46, 7th Avenue, TEDATianjin 300457

Tel. +86 22 25322612Fax +86 22 [email protected]://www.sew-eurodrive.com.cn

AssemblySalesService

Suzhou SEW-EURODRIVE (Suzhou) Co., Ltd.333, Suhong Middle RoadSuzhou Industrial ParkJiangsu Province, 215021

Tel. +86 512 62581781Fax +86 512 [email protected]

Guangzhou SEW-EURODRIVE (Guangzhou) Co., Ltd.No. 9, JunDa RoadEast Section of GETDDGuangzhou 510530

Tel. +86 20 82267890Fax +86 20 [email protected]

Shenyang SEW-EURODRIVE (Shenyang) Co., Ltd.10A-2, 6th RoadShenyang Economic Technological Develop-ment AreaShenyang, 110141

Tel. +86 24 25382538Fax +86 24 [email protected]

Wuhan SEW-EURODRIVE (Wuhan) Co., Ltd.10A-2, 6th RoadNo. 59, the 4th Quanli Road, WEDA430056 Wuhan

Tel. +86 27 84478388Fax +86 27 [email protected]

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11 ddress List

Xi'An SEW-EURODRIVE (Xi'An) Co., Ltd.No. 12 Jinye 2nd RoadXi'An High-Technology Industrial Development ZoneXi'An 710065

Tel. +86 29 68686262Fax +86 29 [email protected]

Additional addresses for service in China provided on request!

Colombia

AssemblySalesService

Bogotá SEW-EURODRIVE COLOMBIA LTDA. Calle 22 No. 132-60Bodega 6, Manzana BSantafé de Bogotá

Tel. +57 1 54750-50Fax +57 1 54750-44http://[email protected]

Croatia

SalesService

Zagreb KOMPEKS d. o. o.Zeleni dol 10HR 10 000 Zagreb

Tel. +385 1 4613-158Fax +385 1 [email protected]

Czech Republic

Sales Prague SEW-EURODRIVE CZ S.R.O.Business Centrum Praha Lužná 591CZ-16000 Praha 6 - Vokovice

Tel. +420 255 709 601Fax +420 220 121 237http://[email protected]

Denmark

AssemblySalesService

Copenhagen SEW-EURODRIVEA/SGeminivej 28-30DK-2670 Greve

Tel. +45 43 9585-00Fax +45 43 9585-09http://[email protected]

Egypt

SalesService

Cairo Copam Egypt for Engineering & Agencies33 EI Hegaz ST, Heliopolis, Cairo

Tel. +20 2 22566-299 + 1 23143088Fax +20 2 22594-757http://www.copam-egypt.com/ [email protected]

Estonia

Sales Tallin ALAS-KUUL ASReti tee 4EE-75301 Peetri küla, Rae vald, Harjumaa

Tel. +372 6593230Fax +372 [email protected]

Finland

AssemblySalesService

Lahti SEW-EURODRIVE OYVesimäentie 4FIN-15860 Hollola 2

Tel. +358 201 589-300Fax +358 3 780-6211http://[email protected]

ProductionAssembly

Karkkila SEW Industrial Gears OyValurinkatu 6, PL 8FI-03600 Karkkila, 03601 Karkkila

Tel. +358 201 589-300Fax +358 201 [email protected]://www.sew-eurodrive.fi

Gabon

Sales Libreville ESG Electro Services GabunFeu Rouge Lalala1889 LibrevilleGabun

Tel. +241 741059Fax +241 [email protected]

China

A

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11Address List

Great Britain

AssemblySalesService

Normanton SEW-EURODRIVE Ltd.Beckbridge Industrial Estate P.O. Box No.1Normanton, West-Yorkshire WF6 1QR

Tel. +44 1924 893-855Fax +44 1924 893-702http://[email protected]

Greece

SalesService

Athens Christ. Boznos & Son S.A.12, K. Mavromichali StreetP.O. Box 80136GR-18545 Piraeus

Tel. +30 2 1042 251-34 Fax +30 2 1042 251-59http://[email protected]

Hong Kong

AssemblySalesService

Hong Kong SEW-EURODRIVE LTD.Unit No. 801-806, 8th FloorHong Leong Industrial ComplexNo. 4, Wang Kwong Road Kowloon, Hong Kong

Tel. +852 36902200Fax +852 [email protected]

Hungary

SalesService

Budapest SEW-EURODRIVE Kft.H-1037 BudapestKunigunda u. 18

Tel. +36 1 437 06-58Fax +36 1 437 [email protected]

India

Registered OfficeAssemblySalesService

Vadodara SEW-EURODRIVE India Private LimitedPlot No. 4, GIDCPOR Ramangamdi • Vadodara - 391 243Gujarat

Tel. +91 265 3045200, +91 265 2831086Fax +91 265 3045300, +91 265 2831087http://[email protected]@seweurodriveindia.com

AssemblySalesService

Chennai SEW-EURODRIVE India Private LimitedPlot No. K3/1, Sipcot Industrial Park Phase IIMambakkam VillageSriperumbudur - 602105Kancheepuram Dist, Tamil Nadu

Tel. +91 44 37188888Fax +91 44 [email protected]

Ireland

SalesService

Dublin Alperton Engineering Ltd. 48 Moyle RoadDublin Industrial EstateGlasnevin, Dublin 11

Tel. +353 1 830-6277Fax +353 1 [email protected]://www.alperton.ie

Israel

Sales Tel-Aviv Liraz Handasa Ltd. Ahofer Str 34B / 22858858 Holon

Tel. +972 3 5599511Fax +972 3 5599512http://[email protected]

Italy

AssemblySalesService

Solaro SEW-EURODRIVE di R. Blickle & Co.s.a.s.Via Bernini,14 I-20020 Solaro (Milano)

Tel. +39 02 96 9801Fax +39 02 96 799781http://[email protected]

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Ivory Coast

Sales Abidjan SICASociété industrielle & commerciale pour l'Afrique165, Boulevard de Marseille26 BP 1115 Abidjan 26

Tel. +225 21 25 79 44Fax +225 21 25 88 [email protected]

Japan

AssemblySalesService

Iwata SEW-EURODRIVE JAPAN CO., LTD 250-1, Shimoman-no,IwataShizuoka 438-0818

Tel. +81 538 373811Fax +81 538 373855http://[email protected]

Kazakhstan

Sales Almaty ТОО "СЕВ-ЕВРОДРАЙВ"пр.Райымбека, 348050061 г. АлматыРеспублика Казахстан

Тел. +7 (727) 334 1880Факс +7 (727) 334 1881http://[email protected]

Latvia

Sales Riga SIA Alas-KuulKatlakalna 11CLV-1073 Riga

Tel. +371 6 7139253Fax +371 6 7139386http://[email protected]

Lebanon

Sales Beirut Gabriel Acar & Fils sarlB. P. 80484Bourj Hammoud, Beirut

Tel. +961 1 510 532Fax +961 1 494 [email protected]

JordanKuwaitSaudi ArabiaSyria

Beirut Middle East Drives S.A.L. (offshore)Sin El Fil.B. P. 55-378Beirut

Tel. +961 1 494 786Fax +961 1 494 [email protected]://www.medrives.com

Lithuania

Sales Alytus UAB IrsevaStatybininku 106CLT-63431 Alytus

Tel. +370 315 79204Fax +370 315 [email protected]://www.sew-eurodrive.lt

Luxembourg

AssemblySalesService

Brussels SEW Caron-VectorResearch park HaasrodeEvenementenlaan 7BE-3001 Leuven

Tel. +32 16 386-311Fax +32 16 386-336http://[email protected]

Malaysia

AssemblySalesService

Johore SEW-EURODRIVE SDN BHD No. 95, Jalan Seroja 39, Taman Johor Jaya81000 Johor Bahru, JohorWest Malaysia

Tel. +60 7 3549409Fax +60 7 [email protected]

Mexico

AssemblySalesService

Quéretaro SEW-EURODRIVE MEXICO SA DE CVSEM-981118-M93Tequisquiapan No. 102Parque Industrial QuéretaroC.P. 76220Quéretaro, México

Tel. +52 442 1030-300Fax +52 442 1030-301http://[email protected]

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11Address List

Morocco

Sales Casablanca AfitRoute D’El JadidaKM 14 RP8Province de NouaceurCommune Rurale de BouskouraMA 20300 Casablanca

Tel. +212 522633700Fax +212 [email protected]://www.groupe-premium.com

Netherlands

AssemblySalesService

Rotterdam VECTOR Aandrijftechniek B.V. Industrieweg 175 NL-3044 AS RotterdamPostbus 10085NL-3004 AB Rotterdam

Tel. +31 10 4463-700Fax +31 10 4155-552http://[email protected]

New Zealand

AssemblySalesService

Auckland SEW-EURODRIVE NEW ZEALAND LTD. P.O. Box 58-428 82 Greenmount driveEast Tamaki Auckland

Tel. +64 9 2745627Fax +64 9 2740165http://[email protected]

Christchurch SEW-EURODRIVE NEW ZEALAND LTD. 10 Settlers Crescent, FerrymeadChristchurch

Tel. +64 3 384-6251Fax +64 3 [email protected]

Norway

AssemblySalesService

Moss SEW-EURODRIVE A/SSolgaard skog 71N-1599 Moss

Tel. +47 69 24 10 20Fax +47 69 24 10 40http://[email protected]

Pakistan

Sales Karachi Industrial Power DrivesAl-Fatah Chamber A/3, 1st Floor Central Com-mercial Area,Sultan Ahmed Shah Road, Block 7/8, Karachi

Tel. +92 21 452 9369Fax +92-21-454 [email protected]

Peru

AssemblySalesService

Lima SEW DEL PERU MOTORES REDUCTORES S.A.C.Los Calderos, 120-124Urbanizacion Industrial Vulcano, ATE, Lima

Tel. +51 1 3495280Fax +51 1 3493002http://[email protected]

Poland

AssemblySalesService

Lodz SEW-EURODRIVE Polska Sp.z.o.o.ul. Techniczna 5 PL-92-518 Łódź

Tel. +48 42 676 53 00Fax +48 42 676 53 45http://[email protected]

24 Hour Service Tel. +48 602 739 739(+48 602 SEW SEW)

[email protected]

Portugal

AssemblySalesService

Coimbra SEW-EURODRIVE, LDA.Apartado 15 P-3050-901 Mealhada

Tel. +351 231 20 9670Fax +351 231 20 3685http://[email protected]

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Romania

SalesService

Bucharest Sialco Trading SRL str. Madrid nr.4 011785 Bucuresti

Tel. +40 21 230-1328Fax +40 21 230-7170 [email protected]

Russia

AssemblySalesService

St. Petersburg ZAO SEW-EURODRIVE P.O. Box 36 195220 St. Petersburg Russia

Tel. +7 812 3332522 +7 812 5357142Fax +7 812 3332523http://[email protected]

Senegal

Sales Dakar SENEMECA Mécanique GénéraleKm 8, Route de Rufisque B.P. 3251, Dakar

Tel. +221 338 494 770Fax +221 338 494 [email protected]://www.senemeca.com

Serbia

Sales Beograd DIPAR d.o.o.Ustanicka 128aPC Košum, IV floorSCG-11000 Beograd

Tel. +381 11 347 3244 / +381 11 288 0393Fax +381 11 347 [email protected]

Singapore

AssemblySalesService

Singapore SEW-EURODRIVE PTE. LTD. No 9, Tuas Drive 2 Jurong Industrial Estate Singapore 638644

Tel. +65 68621701Fax +65 68612827http://[email protected]

Slovakia

Sales Bratislava SEW-Eurodrive SK s.r.o.Rybničná 40SK-831 06 Bratislava

Tel. +421 2 33595 202Fax +421 2 33595 [email protected]://www.sew-eurodrive.sk

Žilina SEW-Eurodrive SK s.r.o.Industry Park - PChZulica M.R.Štefánika 71SK-010 01 Žilina

Tel. +421 41 700 2513Fax +421 41 700 [email protected]

Banská Bystrica SEW-Eurodrive SK s.r.o.Rudlovská cesta 85SK-974 11 Banská Bystrica

Tel. +421 48 414 6564Fax +421 48 414 [email protected]

Košice SEW-Eurodrive SK s.r.o.Slovenská ulica 26SK-040 01 Košice

Tel. +421 55 671 2245Fax +421 55 671 [email protected]

Slovenia

SalesService

Celje Pakman - Pogonska Tehnika d.o.o.UI. XIV. divizije 14SLO - 3000 Celje

Tel. +386 3 490 83-20Fax +386 3 490 [email protected]

South Africa

AssemblySalesService

Johannesburg SEW-EURODRIVE (PROPRIETARY) LIMITEDEurodrive House Cnr. Adcock Ingram and Aerodrome RoadsAeroton Ext. 2Johannesburg 2013P.O.Box 90004Bertsham 2013

Tel. +27 11 248-7000Fax +27 11 494-3104http://[email protected]

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11Address List

Cape Town SEW-EURODRIVE (PROPRIETARY) LIMITED Rainbow ParkCnr. Racecourse & Omuramba RoadMontague GardensCape TownP.O.Box 36556Chempet 7442 Cape Town

Tel. +27 21 552-9820Fax +27 21 552-9830Telex 576 [email protected]

Durban SEW-EURODRIVE (PROPRIETARY) LIMITED2 Monaco PlacePinetownDurbanP.O. Box 10433, Ashwood 3605

Tel. +27 31 700-3451Fax +27 31 [email protected]

Nelspruit SEW-EURODRIVE (PTY) LTD.7 Christie CrescentVintoniaP.O.Box 1942Nelspruit 1200

Tel. +27 13 752-8007Fax +27 13 [email protected]

South Korea

AssemblySalesService

Ansan-City SEW-EURODRIVE KOREA CO., LTD. B 601-4, Banweol Industrial Estate 1048-4, Shingil-DongAnsan 425-120

Tel. +82 31 492-8051Fax +82 31 492-8056http://[email protected]

Busan SEW-EURODRIVE KOREA Co., Ltd.No. 1720 - 11, Songjeong - dongGangseo-kuBusan 618-270

Tel. +82 51 832-0204Fax +82 51 [email protected]

Spain

AssemblySalesService

Bilbao SEW-EURODRIVE ESPAÑA, S.L. Parque Tecnológico, Edificio, 302E-48170 Zamudio (Vizcaya)

Tel. +34 94 43184-70Fax +34 94 43184-71http://[email protected]

Sweden

AssemblySalesService

Jönköping SEW-EURODRIVE ABGnejsvägen 6-8S-55303 JönköpingBox 3100 S-55003 Jönköping

Tel. +46 36 3442 00Fax +46 36 3442 80http://[email protected]

Switzerland

AssemblySalesService

Basel Alfred lmhof A.G.Jurastrasse 10 CH-4142 Münchenstein bei Basel

Tel. +41 61 417 1717Fax +41 61 417 1700http://[email protected]

Thailand

AssemblySalesService

Chonburi SEW-EURODRIVE (Thailand) Ltd.700/456, Moo.7, DonhuarohMuang Chonburi 20000

Tel. +66 38 454281Fax +66 38 [email protected]

Tunisia

Sales Tunis T. M.S. Technic Marketing ServiceZone Industrielle Mghira 2Lot No. 392082 Fouchana

Tel. +216 79 40 88 77Fax +216 79 40 88 66http://[email protected]

South Africa

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Turkey

AssemblySalesService

Istanbul SEW-EURODRIVE Hareket Sistemleri San. ve Tic. Ltd. Sti. Bagdat Cad. Koruma Cikmazi No. 3 TR-34846 Maltepe ISTANBUL

Tel. +90 216 4419163 / 4419164Fax +90 216 3055867http://[email protected]

Ukraine

SalesService

Dnepropetrovsk SEW-EURODRIVEStr. Rabochaja 23-B, Office 40949008 Dnepropetrovsk

Tel. +380 56 370 3211Fax +380 56 372 2078http://[email protected]

United Arab Emirates

SalesService

Sharjah Copam Middle East (FZC)Sharjah Airport International Free ZoneP.O. Box 120709Sharjah

Tel. +971 6 5578-488Fax +971 6 [email protected]

USA

ProductionAssemblySalesServiceCorporate Offices

Southeast Region

SEW-EURODRIVE INC. 1295 Old Spartanburg Highway P.O. Box 518Lyman, S.C. 29365

Tel. +1 864 439-7537Fax Sales +1 864 439-7830Fax Manufacturing +1 864 439-9948Fax Assembly +1 864 439-0566Fax Confidential/HR +1 864 949-5557http://[email protected]

AssemblySalesService

Northeast Region

SEW-EURODRIVE INC. Pureland Ind. Complex 2107 High Hill Road, P.O. Box 481Bridgeport, New Jersey 08014

Tel. +1 856 467-2277Fax +1 856 [email protected]

Midwest Region SEW-EURODRIVE INC.2001 West Main Street Troy, Ohio 45373

Tel. +1 937 335-0036Fax +1 937 [email protected]

Southwest Region

SEW-EURODRIVE INC.3950 Platinum Way Dallas, Texas 75237

Tel. +1 214 330-4824Fax +1 214 [email protected]

Western Region SEW-EURODRIVE INC. 30599 San Antonio St.Hayward, CA 94544

Tel. +1 510 487-3560Fax +1 510 [email protected]

Additional addresses for service in the USA provided on request!

Venezuela

AssemblySalesService

Valencia SEW-EURODRIVE Venezuela S.A.Av. Norte Sur No. 3, Galpon 84-319Zona Industrial Municipal NorteValencia, Estado Carabobo

Tel. +58 241 832-9804Fax +58 241 838-6275http://[email protected]@cantv.net

Vietnam

Sales Ho Chi Minh City Nam Trung Co., Ltd91 - 93 Tran Minh Quyen Street,District 10, HCMC

Tel. +84 8 8301026Fax +84 8 [email protected]

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Index

Index

AAC brakemotors, connection..................................25Ambient temperature .............................................79Application environment.........................................11

BBraking resistor

Connection.........................................................22Installation..........................................................22

CCommunication socket RJ45 .................................27Conformance .........................................................79Connection

Braking resistor ..................................................22Drive and motor .................................................24

Content of this publication......................................10Copyright notice .......................................................7Current ratings .......................................................80

DDigital inputs function select (P1-15)......................71Dimensions

Force vented switch cabinet ..............................18IP20 housing ......................................................16Non-vented metal switch cabinet .......................17Vented switch cabinet ........................................18

Display ...................................................................32Drive and motor connection ...................................24Drive status ............................................................41

Operational ........................................................41Static ..................................................................41

EEasy startup ...........................................................33Electrical connection ..............................................11Electrical Installation ........................................19, 23

Prior to installation .............................................20Electromagnetic compatibility.................................29

EMC emissions ..................................................29EMC immunity....................................................29Filter varistor disconnection (IP20) ....................30

EMC Emission standards.......................................79Environmental data ................................................79

Environment, application .......................................11Exclusion of liability..................................................7Explosion-proof areas............................................11

FFault codes ......................................................43, 44Fault finding ...........................................................43Fault history ...........................................................43

GGateway

Connection.........................................................38Wiring.................................................................37

Group drive ............................................................25

HHelpcard ................................................................20Hoist function .........................................................74Housing

Dimensions ........................................................15

IImportant notes........................................................5Input fuses .............................................................21Input voltage ranges ..............................................13Installation..............................................................10

Braking resistor..................................................22Drive and motor connection...............................24Electrical ............................................................19electrical.............................................................23mechanical.........................................................15Terminal box connections..................................23UL-compliant......................................................28

Interface, user........................................................31Internal values for Modbus control.........................77IP20 / NEMA 1 housing

Dimensions ........................................................16Mounting ............................................................17

IT systems .............................................................21

KKeypad...................................................................31Keypad mode, startup............................................35

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Index

LLiability, exclusion ....................................................7LTX encoder module..............................................20

MMains contactors....................................................21Master drive configuration......................................36Master-Slave mode................................................36Mechanical Installation...........................................15Memory map for Modbus control ...........................76Modbus ..................................................................40Modbus control ......................................................76

Internal values....................................................77Memory map ......................................................76Register description ...........................................77Specification.......................................................76

Motor and drive connection....................................24Motor connection ...................................................25Motor thermal protection (TH / TF).........................25MOVI-PLC®

Motion Protocol ..................................................40Wiring.................................................................37

Multi motor / group drive ........................................25

OOperation .........................................................12, 41

Drive status ........................................................41On IT systems....................................................21Via Feldbus, startup ...........................................37

Option card ............................................................20Output power .........................................................80Overload

Capability ...........................................................14Protection features.............................................14

PParameters ............................................................47

Digital inputs function select (P1-15) .................71Real-time monitoring parameters.......................47

Permanent magnet motors.....................................33Permitted voltage supply systems..........................20PID controller mode, startup ..................................35Power, output .........................................................80Product designation ...............................................13Product names.........................................................7Protection features.................................................14P1-15 Digital inputs function select ........................71

RReal-time monitoring parameters ..........................47Register description for Modbus control ................77Relay terminal........................................................27Repair ....................................................................46RJ45 Communication socket .................................27

SSafe disconnection ................................................11Safety notes.............................................................8

Structure ..............................................................5Structure of the embedded safety notes..............6Structure of the section safety notes ...................6

Service.............................................................43, 46Fault codes ........................................................44Fault history .......................................................43SEW Electronics Service ...................................46Troubleshooting .................................................43

Signal terminals .....................................................26Signal words

Explanation ..........................................................5Slave drive configuration .......................................36Software.................................................................76Specifications.........................................................13Speed reference selection (P1-12) ........................73Startup ...................................................................31

Easy startup.......................................................33Keypad mode.....................................................35Operation via Feldbus........................................37PID controller mode ...........................................35Terminal mode (default).....................................34

Status, drive...........................................................41Structure

Embedded safety notes .......................................6Safety notes.........................................................5Section safety notes ............................................6

Switch cabinet, mounting.......................................17

TTechnical data .......................................................79Terminal box connections......................................23Terminal mode, startup..........................................34TH / TF Motor thermal protection...........................25Trademarks..............................................................7Trip reset................................................................42Troubleshooting .....................................................43

Operating Instructions – M

OVITRAC® LTP-B
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Index

UUL-compliant installation........................................28UOH housing .........................................................38User interface.........................................................31

VVented switch cabinet

Dimensions ........................................................18

Voltage ranges, input.............................................13Voltage supply, permitted systems ........................20

WWarranty ..................................................................7Wiring, Gateway and MOVI-PLC®, ........................37

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SEW-EURODRIVE—Driving the world

SEW-EURODRIVEDriving the world

www.sew-eurodrive.com

SEW-EURODRIVE GmbH & Co KGP.O. Box 3023D-76642 Bruchsal/GermanyPhone +49 7251 75-0Fax +49 7251 [email protected]